blob: 537813b6b752fe73196987bb16f8934b240d4b2b [file] [log] [blame]
Dan Gohmanda85ed82010-10-19 23:09:08 +00001//===- BasicAliasAnalysis.cpp - Stateless Alias Analysis Impl -------------===//
Misha Brukman01808ca2005-04-21 21:13:18 +00002//
John Criswell482202a2003-10-20 19:43:21 +00003// The LLVM Compiler Infrastructure
4//
Chris Lattnerf3ebc3f2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Misha Brukman01808ca2005-04-21 21:13:18 +00007//
John Criswell482202a2003-10-20 19:43:21 +00008//===----------------------------------------------------------------------===//
Chris Lattnerd6a2a992003-02-26 19:41:54 +00009//
Dan Gohmanda85ed82010-10-19 23:09:08 +000010// This file defines the primary stateless implementation of the
11// Alias Analysis interface that implements identities (two different
12// globals cannot alias, etc), but does no stateful analysis.
Chris Lattnerd6a2a992003-02-26 19:41:54 +000013//
14//===----------------------------------------------------------------------===//
15
Chandler Carruth17e0bc32015-08-06 07:33:15 +000016#include "llvm/Analysis/BasicAliasAnalysis.h"
Eugene Zelenko530851c2017-08-11 21:30:02 +000017#include "llvm/ADT/APInt.h"
18#include "llvm/ADT/SmallPtrSet.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000019#include "llvm/ADT/SmallVector.h"
Wei Mid67daae2015-08-05 23:40:30 +000020#include "llvm/ADT/Statistic.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000021#include "llvm/Analysis/AliasAnalysis.h"
Craig Topperdfc89552017-05-14 06:18:34 +000022#include "llvm/Analysis/AssumptionCache.h"
Arnold Schwaighofer833a82e2014-01-03 05:47:03 +000023#include "llvm/Analysis/CFG.h"
Chandler Carruth8a8cd2b2014-01-07 11:48:04 +000024#include "llvm/Analysis/CaptureTracking.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000025#include "llvm/Analysis/InstructionSimplify.h"
Arnold Schwaighofer833a82e2014-01-03 05:47:03 +000026#include "llvm/Analysis/LoopInfo.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000027#include "llvm/Analysis/MemoryBuiltins.h"
Eugene Zelenko530851c2017-08-11 21:30:02 +000028#include "llvm/Analysis/MemoryLocation.h"
29#include "llvm/Analysis/TargetLibraryInfo.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000030#include "llvm/Analysis/ValueTracking.h"
Eugene Zelenko530851c2017-08-11 21:30:02 +000031#include "llvm/IR/Argument.h"
32#include "llvm/IR/Attributes.h"
33#include "llvm/IR/CallSite.h"
34#include "llvm/IR/Constant.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000035#include "llvm/IR/Constants.h"
36#include "llvm/IR/DataLayout.h"
37#include "llvm/IR/DerivedTypes.h"
Chandler Carruth5ad5f152014-01-13 09:26:24 +000038#include "llvm/IR/Dominators.h"
Eugene Zelenko530851c2017-08-11 21:30:02 +000039#include "llvm/IR/Function.h"
40#include "llvm/IR/GetElementPtrTypeIterator.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000041#include "llvm/IR/GlobalAlias.h"
42#include "llvm/IR/GlobalVariable.h"
Eugene Zelenko530851c2017-08-11 21:30:02 +000043#include "llvm/IR/InstrTypes.h"
44#include "llvm/IR/Instruction.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000045#include "llvm/IR/Instructions.h"
46#include "llvm/IR/IntrinsicInst.h"
Eugene Zelenko530851c2017-08-11 21:30:02 +000047#include "llvm/IR/Intrinsics.h"
48#include "llvm/IR/Metadata.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000049#include "llvm/IR/Operator.h"
Eugene Zelenko530851c2017-08-11 21:30:02 +000050#include "llvm/IR/Type.h"
51#include "llvm/IR/User.h"
52#include "llvm/IR/Value.h"
Chris Lattnerd82256a2004-03-15 03:36:49 +000053#include "llvm/Pass.h"
Eugene Zelenko530851c2017-08-11 21:30:02 +000054#include "llvm/Support/Casting.h"
55#include "llvm/Support/CommandLine.h"
56#include "llvm/Support/Compiler.h"
Craig Topper1a36b7d2017-05-15 06:39:41 +000057#include "llvm/Support/KnownBits.h"
Eugene Zelenko530851c2017-08-11 21:30:02 +000058#include <cassert>
59#include <cstdint>
60#include <cstdlib>
61#include <utility>
Gerolf Hoflehner1d1fbb52016-01-30 02:42:11 +000062
63#define DEBUG_TYPE "basicaa"
64
Chris Lattner35997482003-11-25 18:33:40 +000065using namespace llvm;
Brian Gaeke960707c2003-11-11 22:41:34 +000066
Tobias Edler von Kochd8ce16b2015-07-15 19:32:22 +000067/// Enable analysis of recursive PHI nodes.
Chandler Carruth903c5f92015-08-06 07:57:58 +000068static cl::opt<bool> EnableRecPhiAnalysis("basicaa-recphi", cl::Hidden,
69 cl::init(false));
Wei Mid67daae2015-08-05 23:40:30 +000070/// SearchLimitReached / SearchTimes shows how often the limit of
71/// to decompose GEPs is reached. It will affect the precision
72/// of basic alias analysis.
Wei Mid67daae2015-08-05 23:40:30 +000073STATISTIC(SearchLimitReached, "Number of times the limit to "
74 "decompose GEPs is reached");
75STATISTIC(SearchTimes, "Number of times a GEP is decomposed");
76
Arnold Schwaighofer0d10a9d2014-01-02 03:31:36 +000077/// Cutoff after which to stop analysing a set of phi nodes potentially involved
Sanjay Patel9613b292016-01-17 23:13:48 +000078/// in a cycle. Because we are analysing 'through' phi nodes, we need to be
Arnold Schwaighofer833a82e2014-01-03 05:47:03 +000079/// careful with value equivalence. We use reachability to make sure a value
80/// cannot be involved in a cycle.
81const unsigned MaxNumPhiBBsValueReachabilityCheck = 20;
Arnold Schwaighofer0d10a9d2014-01-02 03:31:36 +000082
Arnold Schwaighofer1a444482014-03-26 21:30:19 +000083// The max limit of the search depth in DecomposeGEPExpression() and
84// GetUnderlyingObject(), both functions need to use the same search
85// depth otherwise the algorithm in aliasGEP will assert.
86static const unsigned MaxLookupSearchDepth = 6;
87
Chandler Carruthaa351672016-12-27 10:30:45 +000088bool BasicAAResult::invalidate(Function &F, const PreservedAnalyses &PA,
89 FunctionAnalysisManager::Invalidator &Inv) {
Chandler Carruthaa351672016-12-27 10:30:45 +000090 // We don't care if this analysis itself is preserved, it has no state. But
91 // we need to check that the analyses it depends on have been. Note that we
92 // may be created without handles to some analyses and in that case don't
93 // depend on them.
94 if (Inv.invalidate<AssumptionAnalysis>(F, PA) ||
95 (DT && Inv.invalidate<DominatorTreeAnalysis>(F, PA)) ||
96 (LI && Inv.invalidate<LoopAnalysis>(F, PA)))
97 return true;
98
99 // Otherwise this analysis result remains valid.
100 return false;
101}
102
Chris Lattner2d332972008-06-16 06:30:22 +0000103//===----------------------------------------------------------------------===//
104// Useful predicates
105//===----------------------------------------------------------------------===//
Devang Patel09f162c2007-05-01 21:15:47 +0000106
Chandler Carruthc5d81122015-08-06 08:17:06 +0000107/// Returns true if the pointer is to a function-local object that never
108/// escapes from the function.
Dan Gohman84f90a32010-07-01 20:08:40 +0000109static bool isNonEscapingLocalObject(const Value *V) {
Chris Lattnerfa482582008-06-16 06:28:01 +0000110 // If this is a local allocation, check to see if it escapes.
Dan Gohman84f90a32010-07-01 20:08:40 +0000111 if (isa<AllocaInst>(V) || isNoAliasCall(V))
Dan Gohman94e61762009-11-19 21:57:48 +0000112 // Set StoreCaptures to True so that we can assume in our callers that the
113 // pointer is not the result of a load instruction. Currently
114 // PointerMayBeCaptured doesn't have any special analysis for the
115 // StoreCaptures=false case; if it did, our callers could be refined to be
116 // more precise.
117 return !PointerMayBeCaptured(V, false, /*StoreCaptures=*/true);
Duncan Sands8d65f362009-01-05 21:19:53 +0000118
Chris Lattnerfa482582008-06-16 06:28:01 +0000119 // If this is an argument that corresponds to a byval or noalias argument,
Duncan Sands8d65f362009-01-05 21:19:53 +0000120 // then it has not escaped before entering the function. Check if it escapes
121 // inside the function.
Dan Gohman84f90a32010-07-01 20:08:40 +0000122 if (const Argument *A = dyn_cast<Argument>(V))
Richard Osbornea1fffcf2012-11-05 10:48:24 +0000123 if (A->hasByValAttr() || A->hasNoAliasAttr())
Sanjay Patel9613b292016-01-17 23:13:48 +0000124 // Note even if the argument is marked nocapture, we still need to check
Richard Osbornea1fffcf2012-11-05 10:48:24 +0000125 // for copies made inside the function. The nocapture attribute only
126 // specifies that there are no copies made that outlive the function.
Dan Gohman84f90a32010-07-01 20:08:40 +0000127 return !PointerMayBeCaptured(V, false, /*StoreCaptures=*/true);
Richard Osbornea1fffcf2012-11-05 10:48:24 +0000128
Chris Lattnerb35d9b52008-06-16 06:19:11 +0000129 return false;
130}
131
Chandler Carruthc5d81122015-08-06 08:17:06 +0000132/// Returns true if the pointer is one which would have been considered an
133/// escape by isNonEscapingLocalObject.
Dan Gohman84f90a32010-07-01 20:08:40 +0000134static bool isEscapeSource(const Value *V) {
135 if (isa<CallInst>(V) || isa<InvokeInst>(V) || isa<Argument>(V))
136 return true;
Dan Gohman0824aff2010-06-29 00:50:39 +0000137
138 // The load case works because isNonEscapingLocalObject considers all
139 // stores to be escapes (it passes true for the StoreCaptures argument
140 // to PointerMayBeCaptured).
141 if (isa<LoadInst>(V))
142 return true;
143
144 return false;
145}
Chris Lattnerb35d9b52008-06-16 06:19:11 +0000146
Sanjay Patel9613b292016-01-17 23:13:48 +0000147/// Returns the size of the object specified by V or UnknownSize if unknown.
Rafael Espindola5f57f462014-02-21 18:34:28 +0000148static uint64_t getObjectSize(const Value *V, const DataLayout &DL,
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000149 const TargetLibraryInfo &TLI,
Eli Friedman8bc169c2012-02-27 20:46:07 +0000150 bool RoundToAlign = false) {
Nuno Lopes55fff832012-06-21 15:45:28 +0000151 uint64_t Size;
George Burgess IV56c7e882017-03-21 20:08:59 +0000152 ObjectSizeOpts Opts;
153 Opts.RoundToAlign = RoundToAlign;
154 if (getObjectSize(V, Size, DL, &TLI, Opts))
Nuno Lopes55fff832012-06-21 15:45:28 +0000155 return Size;
Chandler Carruthecbd1682015-06-17 07:21:38 +0000156 return MemoryLocation::UnknownSize;
Dan Gohman44da55b2011-01-18 21:16:06 +0000157}
158
Chandler Carruthc5d81122015-08-06 08:17:06 +0000159/// Returns true if we can prove that the object specified by V is smaller than
160/// Size.
Dan Gohman44da55b2011-01-18 21:16:06 +0000161static bool isObjectSmallerThan(const Value *V, uint64_t Size,
Rafael Espindola5f57f462014-02-21 18:34:28 +0000162 const DataLayout &DL,
Benjamin Kramer8bcc9712012-08-29 15:32:21 +0000163 const TargetLibraryInfo &TLI) {
Nadav Rotemabcc64f2013-04-09 18:16:05 +0000164 // Note that the meanings of the "object" are slightly different in the
165 // following contexts:
166 // c1: llvm::getObjectSize()
167 // c2: llvm.objectsize() intrinsic
168 // c3: isObjectSmallerThan()
169 // c1 and c2 share the same meaning; however, the meaning of "object" in c3
170 // refers to the "entire object".
171 //
172 // Consider this example:
173 // char *p = (char*)malloc(100)
174 // char *q = p+80;
175 //
176 // In the context of c1 and c2, the "object" pointed by q refers to the
177 // stretch of memory of q[0:19]. So, getObjectSize(q) should return 20.
178 //
179 // However, in the context of c3, the "object" refers to the chunk of memory
180 // being allocated. So, the "object" has 100 bytes, and q points to the middle
181 // the "object". In case q is passed to isObjectSmallerThan() as the 1st
182 // parameter, before the llvm::getObjectSize() is called to get the size of
183 // entire object, we should:
184 // - either rewind the pointer q to the base-address of the object in
185 // question (in this case rewind to p), or
186 // - just give up. It is up to caller to make sure the pointer is pointing
187 // to the base address the object.
Jakub Staszak07f383f2013-08-24 14:16:00 +0000188 //
Nadav Rotemabcc64f2013-04-09 18:16:05 +0000189 // We go for 2nd option for simplicity.
190 if (!isIdentifiedObject(V))
191 return false;
192
Eli Friedman8bc169c2012-02-27 20:46:07 +0000193 // This function needs to use the aligned object size because we allow
194 // reads a bit past the end given sufficient alignment.
Chandler Carruth903c5f92015-08-06 07:57:58 +0000195 uint64_t ObjectSize = getObjectSize(V, DL, TLI, /*RoundToAlign*/ true);
Jakub Staszak07f383f2013-08-24 14:16:00 +0000196
Chandler Carruthecbd1682015-06-17 07:21:38 +0000197 return ObjectSize != MemoryLocation::UnknownSize && ObjectSize < Size;
Dan Gohman44da55b2011-01-18 21:16:06 +0000198}
199
Chandler Carruthc5d81122015-08-06 08:17:06 +0000200/// Returns true if we can prove that the object specified by V has size Size.
Chandler Carruth903c5f92015-08-06 07:57:58 +0000201static bool isObjectSize(const Value *V, uint64_t Size, const DataLayout &DL,
202 const TargetLibraryInfo &TLI) {
Rafael Espindola5f57f462014-02-21 18:34:28 +0000203 uint64_t ObjectSize = getObjectSize(V, DL, TLI);
Chandler Carruthecbd1682015-06-17 07:21:38 +0000204 return ObjectSize != MemoryLocation::UnknownSize && ObjectSize == Size;
Chris Lattner98ad8162008-06-16 06:10:11 +0000205}
206
Chris Lattner2d332972008-06-16 06:30:22 +0000207//===----------------------------------------------------------------------===//
Chris Lattner9f7500f2010-08-18 22:07:29 +0000208// GetElementPtr Instruction Decomposition and Analysis
209//===----------------------------------------------------------------------===//
210
Chandler Carruthc5d81122015-08-06 08:17:06 +0000211/// Analyzes the specified value as a linear expression: "A*V + B", where A and
212/// B are constant integers.
213///
214/// Returns the scale and offset values as APInts and return V as a Value*, and
215/// return whether we looked through any sign or zero extends. The incoming
Sanjay Patel9613b292016-01-17 23:13:48 +0000216/// Value is known to have IntegerType, and it may already be sign or zero
Chandler Carruthc5d81122015-08-06 08:17:06 +0000217/// extended.
Chris Lattner3decde92010-08-18 23:09:49 +0000218///
219/// Note that this looks through extends, so the high bits may not be
220/// represented in the result.
Chandler Carruth7b560d42015-09-09 17:55:00 +0000221/*static*/ const Value *BasicAAResult::GetLinearExpression(
Quentin Colombet5989bc62015-08-31 22:32:47 +0000222 const Value *V, APInt &Scale, APInt &Offset, unsigned &ZExtBits,
223 unsigned &SExtBits, const DataLayout &DL, unsigned Depth,
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000224 AssumptionCache *AC, DominatorTree *DT, bool &NSW, bool &NUW) {
Chris Lattner9f7500f2010-08-18 22:07:29 +0000225 assert(V->getType()->isIntegerTy() && "Not an integer value");
226
227 // Limit our recursion depth.
228 if (Depth == 6) {
229 Scale = 1;
230 Offset = 0;
231 return V;
232 }
Jakub Staszak07f383f2013-08-24 14:16:00 +0000233
Quentin Colombet5989bc62015-08-31 22:32:47 +0000234 if (const ConstantInt *Const = dyn_cast<ConstantInt>(V)) {
Sanjay Patel9613b292016-01-17 23:13:48 +0000235 // If it's a constant, just convert it to an offset and remove the variable.
236 // If we've been called recursively, the Offset bit width will be greater
Quentin Colombet5989bc62015-08-31 22:32:47 +0000237 // than the constant's (the Offset's always as wide as the outermost call),
238 // so we'll zext here and process any extension in the isa<SExtInst> &
239 // isa<ZExtInst> cases below.
240 Offset += Const->getValue().zextOrSelf(Offset.getBitWidth());
241 assert(Scale == 0 && "Constant values don't have a scale");
242 return V;
243 }
244
245 if (const BinaryOperator *BOp = dyn_cast<BinaryOperator>(V)) {
Chris Lattner9f7500f2010-08-18 22:07:29 +0000246 if (ConstantInt *RHSC = dyn_cast<ConstantInt>(BOp->getOperand(1))) {
Sanjay Patel9613b292016-01-17 23:13:48 +0000247 // If we've been called recursively, then Offset and Scale will be wider
248 // than the BOp operands. We'll always zext it here as we'll process sign
Quentin Colombet5989bc62015-08-31 22:32:47 +0000249 // extensions below (see the isa<SExtInst> / isa<ZExtInst> cases).
250 APInt RHS = RHSC->getValue().zextOrSelf(Offset.getBitWidth());
251
Chris Lattner9f7500f2010-08-18 22:07:29 +0000252 switch (BOp->getOpcode()) {
Chandler Carruth903c5f92015-08-06 07:57:58 +0000253 default:
Quentin Colombet5989bc62015-08-31 22:32:47 +0000254 // We don't understand this instruction, so we can't decompose it any
255 // further.
256 Scale = 1;
257 Offset = 0;
258 return V;
Chris Lattner9f7500f2010-08-18 22:07:29 +0000259 case Instruction::Or:
260 // X|C == X+C if all the bits in C are unset in X. Otherwise we can't
261 // analyze it.
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000262 if (!MaskedValueIsZero(BOp->getOperand(0), RHSC->getValue(), DL, 0, AC,
Quentin Colombet5989bc62015-08-31 22:32:47 +0000263 BOp, DT)) {
264 Scale = 1;
265 Offset = 0;
266 return V;
267 }
Justin Bognercd1d5aa2016-08-17 20:30:52 +0000268 LLVM_FALLTHROUGH;
Chris Lattner9f7500f2010-08-18 22:07:29 +0000269 case Instruction::Add:
Quentin Colombet5989bc62015-08-31 22:32:47 +0000270 V = GetLinearExpression(BOp->getOperand(0), Scale, Offset, ZExtBits,
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000271 SExtBits, DL, Depth + 1, AC, DT, NSW, NUW);
Quentin Colombet5989bc62015-08-31 22:32:47 +0000272 Offset += RHS;
273 break;
274 case Instruction::Sub:
275 V = GetLinearExpression(BOp->getOperand(0), Scale, Offset, ZExtBits,
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000276 SExtBits, DL, Depth + 1, AC, DT, NSW, NUW);
Quentin Colombet5989bc62015-08-31 22:32:47 +0000277 Offset -= RHS;
278 break;
Chris Lattner9f7500f2010-08-18 22:07:29 +0000279 case Instruction::Mul:
Quentin Colombet5989bc62015-08-31 22:32:47 +0000280 V = GetLinearExpression(BOp->getOperand(0), Scale, Offset, ZExtBits,
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000281 SExtBits, DL, Depth + 1, AC, DT, NSW, NUW);
Quentin Colombet5989bc62015-08-31 22:32:47 +0000282 Offset *= RHS;
283 Scale *= RHS;
284 break;
Chris Lattner9f7500f2010-08-18 22:07:29 +0000285 case Instruction::Shl:
Quentin Colombet5989bc62015-08-31 22:32:47 +0000286 V = GetLinearExpression(BOp->getOperand(0), Scale, Offset, ZExtBits,
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000287 SExtBits, DL, Depth + 1, AC, DT, NSW, NUW);
Quentin Colombet5989bc62015-08-31 22:32:47 +0000288 Offset <<= RHS.getLimitedValue();
289 Scale <<= RHS.getLimitedValue();
290 // the semantics of nsw and nuw for left shifts don't match those of
291 // multiplications, so we won't propagate them.
292 NSW = NUW = false;
Chris Lattner9f7500f2010-08-18 22:07:29 +0000293 return V;
294 }
Quentin Colombet5989bc62015-08-31 22:32:47 +0000295
296 if (isa<OverflowingBinaryOperator>(BOp)) {
297 NUW &= BOp->hasNoUnsignedWrap();
298 NSW &= BOp->hasNoSignedWrap();
299 }
300 return V;
Chris Lattner9f7500f2010-08-18 22:07:29 +0000301 }
302 }
Jakub Staszak07f383f2013-08-24 14:16:00 +0000303
Chris Lattner9f7500f2010-08-18 22:07:29 +0000304 // Since GEP indices are sign extended anyway, we don't care about the high
Chris Lattner3decde92010-08-18 23:09:49 +0000305 // bits of a sign or zero extended value - just scales and offsets. The
306 // extensions have to be consistent though.
Quentin Colombet5989bc62015-08-31 22:32:47 +0000307 if (isa<SExtInst>(V) || isa<ZExtInst>(V)) {
Chris Lattner9f7500f2010-08-18 22:07:29 +0000308 Value *CastOp = cast<CastInst>(V)->getOperand(0);
Quentin Colombet5989bc62015-08-31 22:32:47 +0000309 unsigned NewWidth = V->getType()->getPrimitiveSizeInBits();
Chris Lattner9f7500f2010-08-18 22:07:29 +0000310 unsigned SmallWidth = CastOp->getType()->getPrimitiveSizeInBits();
Quentin Colombet5989bc62015-08-31 22:32:47 +0000311 unsigned OldZExtBits = ZExtBits, OldSExtBits = SExtBits;
312 const Value *Result =
313 GetLinearExpression(CastOp, Scale, Offset, ZExtBits, SExtBits, DL,
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000314 Depth + 1, AC, DT, NSW, NUW);
Chris Lattner3decde92010-08-18 23:09:49 +0000315
Simon Pilgrimf2fbf432016-11-20 13:47:59 +0000316 // zext(zext(%x)) == zext(%x), and similarly for sext; we'll handle this
Quentin Colombet5989bc62015-08-31 22:32:47 +0000317 // by just incrementing the number of bits we've extended by.
318 unsigned ExtendedBy = NewWidth - SmallWidth;
319
320 if (isa<SExtInst>(V) && ZExtBits == 0) {
321 // sext(sext(%x, a), b) == sext(%x, a + b)
322
323 if (NSW) {
324 // We haven't sign-wrapped, so it's valid to decompose sext(%x + c)
325 // into sext(%x) + sext(c). We'll sext the Offset ourselves:
326 unsigned OldWidth = Offset.getBitWidth();
327 Offset = Offset.trunc(SmallWidth).sext(NewWidth).zextOrSelf(OldWidth);
328 } else {
329 // We may have signed-wrapped, so don't decompose sext(%x + c) into
330 // sext(%x) + sext(c)
331 Scale = 1;
332 Offset = 0;
333 Result = CastOp;
334 ZExtBits = OldZExtBits;
335 SExtBits = OldSExtBits;
336 }
337 SExtBits += ExtendedBy;
338 } else {
339 // sext(zext(%x, a), b) = zext(zext(%x, a), b) = zext(%x, a + b)
340
341 if (!NUW) {
342 // We may have unsigned-wrapped, so don't decompose zext(%x + c) into
343 // zext(%x) + zext(c)
344 Scale = 1;
345 Offset = 0;
346 Result = CastOp;
347 ZExtBits = OldZExtBits;
348 SExtBits = OldSExtBits;
349 }
350 ZExtBits += ExtendedBy;
351 }
Jakub Staszak07f383f2013-08-24 14:16:00 +0000352
Chris Lattner9f7500f2010-08-18 22:07:29 +0000353 return Result;
354 }
Jakub Staszak07f383f2013-08-24 14:16:00 +0000355
Chris Lattner9f7500f2010-08-18 22:07:29 +0000356 Scale = 1;
357 Offset = 0;
358 return V;
359}
360
Gerolf Hoflehner1d1fbb52016-01-30 02:42:11 +0000361/// To ensure a pointer offset fits in an integer of size PointerSize
362/// (in bits) when that size is smaller than 64. This is an issue in
363/// particular for 32b programs with negative indices that rely on two's
Gerolf Hoflehnerd24671f2016-01-30 05:58:38 +0000364/// complement wrap-arounds for precise alias information.
Gerolf Hoflehner1d1fbb52016-01-30 02:42:11 +0000365static int64_t adjustToPointerSize(int64_t Offset, unsigned PointerSize) {
366 assert(PointerSize <= 64 && "Invalid PointerSize!");
367 unsigned ShiftBits = 64 - PointerSize;
Gerolf Hoflehner73fc84b2016-01-30 05:35:09 +0000368 return (int64_t)((uint64_t)Offset << ShiftBits) >> ShiftBits;
Gerolf Hoflehner1d1fbb52016-01-30 02:42:11 +0000369}
370
Chandler Carruthc5d81122015-08-06 08:17:06 +0000371/// If V is a symbolic pointer expression, decompose it into a base pointer
372/// with a constant offset and a number of scaled symbolic offsets.
Chris Lattner9f7500f2010-08-18 22:07:29 +0000373///
Chandler Carruthc5d81122015-08-06 08:17:06 +0000374/// The scaled symbolic offsets (represented by pairs of a Value* and a scale
375/// in the VarIndices vector) are Value*'s that are known to be scaled by the
376/// specified amount, but which may have other unrepresented high bits. As
377/// such, the gep cannot necessarily be reconstructed from its decomposed form.
Chris Lattner9f7500f2010-08-18 22:07:29 +0000378///
Micah Villmowcdfe20b2012-10-08 16:38:25 +0000379/// When DataLayout is around, this function is capable of analyzing everything
Arnold Schwaighofer1a444482014-03-26 21:30:19 +0000380/// that GetUnderlyingObject can look through. To be able to do that
381/// GetUnderlyingObject and DecomposeGEPExpression must use the same search
Chandler Carruthc5d81122015-08-06 08:17:06 +0000382/// depth (MaxLookupSearchDepth). When DataLayout not is around, it just looks
383/// through pointer casts.
Michael Kuperstein82069c42016-05-25 22:23:08 +0000384bool BasicAAResult::DecomposeGEPExpression(const Value *V,
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000385 DecomposedGEP &Decomposed, const DataLayout &DL, AssumptionCache *AC,
Michael Kuperstein82069c42016-05-25 22:23:08 +0000386 DominatorTree *DT) {
Chris Lattner9f7500f2010-08-18 22:07:29 +0000387 // Limit recursion depth to limit compile time in crazy cases.
Arnold Schwaighofer1a444482014-03-26 21:30:19 +0000388 unsigned MaxLookup = MaxLookupSearchDepth;
Wei Mid67daae2015-08-05 23:40:30 +0000389 SearchTimes++;
Jakub Staszak07f383f2013-08-24 14:16:00 +0000390
Michael Kuperstein82069c42016-05-25 22:23:08 +0000391 Decomposed.StructOffset = 0;
392 Decomposed.OtherOffset = 0;
393 Decomposed.VarIndices.clear();
Chris Lattner9f7500f2010-08-18 22:07:29 +0000394 do {
395 // See if this is a bitcast or GEP.
396 const Operator *Op = dyn_cast<Operator>(V);
Craig Topper9f008862014-04-15 04:59:12 +0000397 if (!Op) {
Chris Lattner9f7500f2010-08-18 22:07:29 +0000398 // The only non-operator case we can handle are GlobalAliases.
399 if (const GlobalAlias *GA = dyn_cast<GlobalAlias>(V)) {
Sanjoy Das5ce32722016-04-08 00:48:30 +0000400 if (!GA->isInterposable()) {
Chris Lattner9f7500f2010-08-18 22:07:29 +0000401 V = GA->getAliasee();
402 continue;
403 }
404 }
Michael Kuperstein82069c42016-05-25 22:23:08 +0000405 Decomposed.Base = V;
406 return false;
Chris Lattner9f7500f2010-08-18 22:07:29 +0000407 }
Jakub Staszak07f383f2013-08-24 14:16:00 +0000408
Matt Arsenault70f4db882014-07-15 00:56:40 +0000409 if (Op->getOpcode() == Instruction::BitCast ||
410 Op->getOpcode() == Instruction::AddrSpaceCast) {
Chris Lattner9f7500f2010-08-18 22:07:29 +0000411 V = Op->getOperand(0);
412 continue;
413 }
Dan Gohman05b18f12010-12-15 20:49:55 +0000414
Chris Lattner9f7500f2010-08-18 22:07:29 +0000415 const GEPOperator *GEPOp = dyn_cast<GEPOperator>(Op);
Craig Topper9f008862014-04-15 04:59:12 +0000416 if (!GEPOp) {
Hal Finkel5c12d8f2016-07-11 01:32:20 +0000417 if (auto CS = ImmutableCallSite(V))
418 if (const Value *RV = CS.getReturnedArgOperand()) {
419 V = RV;
420 continue;
421 }
422
Dan Gohman0573b552011-05-24 18:24:08 +0000423 // If it's not a GEP, hand it off to SimplifyInstruction to see if it
424 // can come up with something. This matches what GetUnderlyingObject does.
425 if (const Instruction *I = dyn_cast<Instruction>(V))
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000426 // TODO: Get a DominatorTree and AssumptionCache and use them here
427 // (these are both now available in this function, but this should be
428 // updated when GetUnderlyingObject is updated). TLI should be
429 // provided also.
Dan Gohman0573b552011-05-24 18:24:08 +0000430 if (const Value *Simplified =
Chandler Carruth903c5f92015-08-06 07:57:58 +0000431 SimplifyInstruction(const_cast<Instruction *>(I), DL)) {
Dan Gohman0573b552011-05-24 18:24:08 +0000432 V = Simplified;
433 continue;
434 }
Jakub Staszak07f383f2013-08-24 14:16:00 +0000435
Michael Kuperstein82069c42016-05-25 22:23:08 +0000436 Decomposed.Base = V;
437 return false;
Dan Gohman0573b552011-05-24 18:24:08 +0000438 }
Jakub Staszak07f383f2013-08-24 14:16:00 +0000439
Chris Lattner9f7500f2010-08-18 22:07:29 +0000440 // Don't attempt to analyze GEPs over unsized objects.
Michael Kuperstein82069c42016-05-25 22:23:08 +0000441 if (!GEPOp->getSourceElementType()->isSized()) {
442 Decomposed.Base = V;
443 return false;
444 }
Jakub Staszak07f383f2013-08-24 14:16:00 +0000445
Matt Arsenaulta8fe22b2013-11-16 00:36:43 +0000446 unsigned AS = GEPOp->getPointerAddressSpace();
Chris Lattner9f7500f2010-08-18 22:07:29 +0000447 // Walk the indices of the GEP, accumulating them into BaseOff/VarIndices.
448 gep_type_iterator GTI = gep_type_begin(GEPOp);
Gerolf Hoflehner1d1fbb52016-01-30 02:42:11 +0000449 unsigned PointerSize = DL.getPointerSizeInBits(AS);
Gerolf Hoflehner9e2afa82016-10-22 02:41:39 +0000450 // Assume all GEP operands are constants until proven otherwise.
451 bool GepHasConstantOffset = true;
Chandler Carruth903c5f92015-08-06 07:57:58 +0000452 for (User::const_op_iterator I = GEPOp->op_begin() + 1, E = GEPOp->op_end();
Peter Collingbourneab85225b2016-12-02 02:24:42 +0000453 I != E; ++I, ++GTI) {
Quentin Colombet5989bc62015-08-31 22:32:47 +0000454 const Value *Index = *I;
Chris Lattner9f7500f2010-08-18 22:07:29 +0000455 // Compute the (potentially symbolic) offset in bytes for this index.
Peter Collingbourneab85225b2016-12-02 02:24:42 +0000456 if (StructType *STy = GTI.getStructTypeOrNull()) {
Chris Lattner9f7500f2010-08-18 22:07:29 +0000457 // For a struct, add the member offset.
458 unsigned FieldNo = cast<ConstantInt>(Index)->getZExtValue();
Chandler Carruth903c5f92015-08-06 07:57:58 +0000459 if (FieldNo == 0)
460 continue;
Jakub Staszak07f383f2013-08-24 14:16:00 +0000461
Michael Kuperstein82069c42016-05-25 22:23:08 +0000462 Decomposed.StructOffset +=
463 DL.getStructLayout(STy)->getElementOffset(FieldNo);
Chris Lattner9f7500f2010-08-18 22:07:29 +0000464 continue;
465 }
Jakub Staszak07f383f2013-08-24 14:16:00 +0000466
Chris Lattner9f7500f2010-08-18 22:07:29 +0000467 // For an array/pointer, add the element offset, explicitly scaled.
Quentin Colombet5989bc62015-08-31 22:32:47 +0000468 if (const ConstantInt *CIdx = dyn_cast<ConstantInt>(Index)) {
Chandler Carruth903c5f92015-08-06 07:57:58 +0000469 if (CIdx->isZero())
470 continue;
Michael Kuperstein82069c42016-05-25 22:23:08 +0000471 Decomposed.OtherOffset +=
Peter Collingbourneab85225b2016-12-02 02:24:42 +0000472 DL.getTypeAllocSize(GTI.getIndexedType()) * CIdx->getSExtValue();
Chris Lattner9f7500f2010-08-18 22:07:29 +0000473 continue;
474 }
Jakub Staszak07f383f2013-08-24 14:16:00 +0000475
Gerolf Hoflehner9e2afa82016-10-22 02:41:39 +0000476 GepHasConstantOffset = false;
477
Peter Collingbourneab85225b2016-12-02 02:24:42 +0000478 uint64_t Scale = DL.getTypeAllocSize(GTI.getIndexedType());
Quentin Colombet5989bc62015-08-31 22:32:47 +0000479 unsigned ZExtBits = 0, SExtBits = 0;
Jakub Staszak07f383f2013-08-24 14:16:00 +0000480
Chris Lattner3decde92010-08-18 23:09:49 +0000481 // If the integer type is smaller than the pointer size, it is implicitly
482 // sign extended to pointer size.
Matt Arsenaultfa252722013-09-27 22:18:51 +0000483 unsigned Width = Index->getType()->getIntegerBitWidth();
Quentin Colombet5989bc62015-08-31 22:32:47 +0000484 if (PointerSize > Width)
485 SExtBits += PointerSize - Width;
Jakub Staszak07f383f2013-08-24 14:16:00 +0000486
Chris Lattner3decde92010-08-18 23:09:49 +0000487 // Use GetLinearExpression to decompose the index into a C1*V+C2 form.
Chris Lattner9f7500f2010-08-18 22:07:29 +0000488 APInt IndexScale(Width, 0), IndexOffset(Width, 0);
Quentin Colombet5989bc62015-08-31 22:32:47 +0000489 bool NSW = true, NUW = true;
490 Index = GetLinearExpression(Index, IndexScale, IndexOffset, ZExtBits,
Daniel Jasperaec2fa32016-12-19 08:22:17 +0000491 SExtBits, DL, 0, AC, DT, NSW, NUW);
Jakub Staszak07f383f2013-08-24 14:16:00 +0000492
Chris Lattner9f7500f2010-08-18 22:07:29 +0000493 // The GEP index scale ("Scale") scales C1*V+C2, yielding (C1*V+C2)*Scale.
494 // This gives us an aggregate computation of (C1*Scale)*V + C2*Scale.
Michael Kuperstein82069c42016-05-25 22:23:08 +0000495 Decomposed.OtherOffset += IndexOffset.getSExtValue() * Scale;
Eli Friedmanab3a1282010-09-15 20:08:03 +0000496 Scale *= IndexScale.getSExtValue();
Jakub Staszak07f383f2013-08-24 14:16:00 +0000497
Chris Lattner0ab5e2c2011-04-15 05:18:47 +0000498 // If we already had an occurrence of this index variable, merge this
Chris Lattner9f7500f2010-08-18 22:07:29 +0000499 // scale into it. For example, we want to handle:
500 // A[x][x] -> x*16 + x*4 -> x*20
501 // This also ensures that 'x' only appears in the index list once.
Michael Kuperstein82069c42016-05-25 22:23:08 +0000502 for (unsigned i = 0, e = Decomposed.VarIndices.size(); i != e; ++i) {
Gerolf Hoflehner9e2afa82016-10-22 02:41:39 +0000503 if (Decomposed.VarIndices[i].V == Index &&
Michael Kuperstein82069c42016-05-25 22:23:08 +0000504 Decomposed.VarIndices[i].ZExtBits == ZExtBits &&
505 Decomposed.VarIndices[i].SExtBits == SExtBits) {
506 Scale += Decomposed.VarIndices[i].Scale;
507 Decomposed.VarIndices.erase(Decomposed.VarIndices.begin() + i);
Chris Lattner9f7500f2010-08-18 22:07:29 +0000508 break;
509 }
510 }
Jakub Staszak07f383f2013-08-24 14:16:00 +0000511
Chris Lattner9f7500f2010-08-18 22:07:29 +0000512 // Make sure that we have a scale that makes sense for this target's
513 // pointer size.
Gerolf Hoflehner1d1fbb52016-01-30 02:42:11 +0000514 Scale = adjustToPointerSize(Scale, PointerSize);
Jakub Staszak07f383f2013-08-24 14:16:00 +0000515
Chris Lattner1b9c3872010-08-18 22:47:56 +0000516 if (Scale) {
Quentin Colombet5989bc62015-08-31 22:32:47 +0000517 VariableGEPIndex Entry = {Index, ZExtBits, SExtBits,
Jeffrey Yasskin6381c012011-07-27 06:22:51 +0000518 static_cast<int64_t>(Scale)};
Michael Kuperstein82069c42016-05-25 22:23:08 +0000519 Decomposed.VarIndices.push_back(Entry);
Chris Lattner1b9c3872010-08-18 22:47:56 +0000520 }
Chris Lattner9f7500f2010-08-18 22:07:29 +0000521 }
Jakub Staszak07f383f2013-08-24 14:16:00 +0000522
Gerolf Hoflehner87ddb652016-01-30 05:52:53 +0000523 // Take care of wrap-arounds
Gerolf Hoflehner9e2afa82016-10-22 02:41:39 +0000524 if (GepHasConstantOffset) {
525 Decomposed.StructOffset =
526 adjustToPointerSize(Decomposed.StructOffset, PointerSize);
527 Decomposed.OtherOffset =
528 adjustToPointerSize(Decomposed.OtherOffset, PointerSize);
529 }
Gerolf Hoflehner87ddb652016-01-30 05:52:53 +0000530
Chris Lattner9f7500f2010-08-18 22:07:29 +0000531 // Analyze the base pointer next.
532 V = GEPOp->getOperand(0);
533 } while (--MaxLookup);
Jakub Staszak07f383f2013-08-24 14:16:00 +0000534
Chris Lattner9f7500f2010-08-18 22:07:29 +0000535 // If the chain of expressions is too deep, just return early.
Michael Kuperstein82069c42016-05-25 22:23:08 +0000536 Decomposed.Base = V;
Wei Mid67daae2015-08-05 23:40:30 +0000537 SearchLimitReached++;
Michael Kuperstein82069c42016-05-25 22:23:08 +0000538 return true;
Chris Lattner9f7500f2010-08-18 22:07:29 +0000539}
540
Chandler Carruthc5d81122015-08-06 08:17:06 +0000541/// Returns whether the given pointer value points to memory that is local to
542/// the function, with global constants being considered local to all
543/// functions.
Chandler Carruth7b560d42015-09-09 17:55:00 +0000544bool BasicAAResult::pointsToConstantMemory(const MemoryLocation &Loc,
545 bool OrLocal) {
Dan Gohman9130bad2010-11-08 16:45:26 +0000546 assert(Visited.empty() && "Visited must be cleared after use!");
Chris Lattner2d332972008-06-16 06:30:22 +0000547
Dan Gohman142ff822010-11-08 20:26:19 +0000548 unsigned MaxLookup = 8;
Dan Gohman9130bad2010-11-08 16:45:26 +0000549 SmallVector<const Value *, 16> Worklist;
550 Worklist.push_back(Loc.Ptr);
551 do {
Chandler Carruth7b560d42015-09-09 17:55:00 +0000552 const Value *V = GetUnderlyingObject(Worklist.pop_back_val(), DL);
David Blaikie70573dc2014-11-19 07:49:26 +0000553 if (!Visited.insert(V).second) {
Dan Gohman9130bad2010-11-08 16:45:26 +0000554 Visited.clear();
Chandler Carruth7b560d42015-09-09 17:55:00 +0000555 return AAResultBase::pointsToConstantMemory(Loc, OrLocal);
Dan Gohman9130bad2010-11-08 16:45:26 +0000556 }
Dan Gohman5f1702e2010-08-06 01:25:49 +0000557
Dan Gohman9130bad2010-11-08 16:45:26 +0000558 // An alloca instruction defines local memory.
559 if (OrLocal && isa<AllocaInst>(V))
560 continue;
561
562 // A global constant counts as local memory for our purposes.
563 if (const GlobalVariable *GV = dyn_cast<GlobalVariable>(V)) {
564 // Note: this doesn't require GV to be "ODR" because it isn't legal for a
565 // global to be marked constant in some modules and non-constant in
566 // others. GV may even be a declaration, not a definition.
567 if (!GV->isConstant()) {
568 Visited.clear();
Chandler Carruth7b560d42015-09-09 17:55:00 +0000569 return AAResultBase::pointsToConstantMemory(Loc, OrLocal);
Dan Gohman9130bad2010-11-08 16:45:26 +0000570 }
571 continue;
572 }
573
574 // If both select values point to local memory, then so does the select.
575 if (const SelectInst *SI = dyn_cast<SelectInst>(V)) {
576 Worklist.push_back(SI->getTrueValue());
577 Worklist.push_back(SI->getFalseValue());
578 continue;
579 }
580
581 // If all values incoming to a phi node point to local memory, then so does
582 // the phi.
583 if (const PHINode *PN = dyn_cast<PHINode>(V)) {
Dan Gohman142ff822010-11-08 20:26:19 +0000584 // Don't bother inspecting phi nodes with many operands.
585 if (PN->getNumIncomingValues() > MaxLookup) {
586 Visited.clear();
Chandler Carruth7b560d42015-09-09 17:55:00 +0000587 return AAResultBase::pointsToConstantMemory(Loc, OrLocal);
Dan Gohman142ff822010-11-08 20:26:19 +0000588 }
Pete Cooper833f34d2015-05-12 20:05:31 +0000589 for (Value *IncValue : PN->incoming_values())
590 Worklist.push_back(IncValue);
Dan Gohman9130bad2010-11-08 16:45:26 +0000591 continue;
592 }
593
594 // Otherwise be conservative.
595 Visited.clear();
Chandler Carruth7b560d42015-09-09 17:55:00 +0000596 return AAResultBase::pointsToConstantMemory(Loc, OrLocal);
Dan Gohman142ff822010-11-08 20:26:19 +0000597 } while (!Worklist.empty() && --MaxLookup);
Dan Gohman9130bad2010-11-08 16:45:26 +0000598
599 Visited.clear();
Dan Gohman142ff822010-11-08 20:26:19 +0000600 return Worklist.empty();
Chris Lattner2d332972008-06-16 06:30:22 +0000601}
602
Chandler Carruthc5d81122015-08-06 08:17:06 +0000603/// Returns the behavior when calling the given call site.
Chandler Carruth7b560d42015-09-09 17:55:00 +0000604FunctionModRefBehavior BasicAAResult::getModRefBehavior(ImmutableCallSite CS) {
Dan Gohman5f1702e2010-08-06 01:25:49 +0000605 if (CS.doesNotAccessMemory())
606 // Can't do better than this.
Chandler Carruth194f59c2015-07-22 23:15:57 +0000607 return FMRB_DoesNotAccessMemory;
Dan Gohman5f1702e2010-08-06 01:25:49 +0000608
Chandler Carruth194f59c2015-07-22 23:15:57 +0000609 FunctionModRefBehavior Min = FMRB_UnknownModRefBehavior;
Dan Gohman5f1702e2010-08-06 01:25:49 +0000610
611 // If the callsite knows it only reads memory, don't return worse
612 // than that.
613 if (CS.onlyReadsMemory())
Chandler Carruth194f59c2015-07-22 23:15:57 +0000614 Min = FMRB_OnlyReadsMemory;
Nicolai Haehnle84c9f992016-07-04 08:01:29 +0000615 else if (CS.doesNotReadMemory())
616 Min = FMRB_DoesNotReadMemory;
Dan Gohman5f1702e2010-08-06 01:25:49 +0000617
Igor Laevsky39d662f2015-07-11 10:30:36 +0000618 if (CS.onlyAccessesArgMemory())
Chandler Carruth194f59c2015-07-22 23:15:57 +0000619 Min = FunctionModRefBehavior(Min & FMRB_OnlyAccessesArgumentPointees);
Yichao Yu6fefc0d2017-11-02 12:18:33 +0000620 else if (CS.onlyAccessesInaccessibleMemory())
621 Min = FunctionModRefBehavior(Min & FMRB_OnlyAccessesInaccessibleMem);
622 else if (CS.onlyAccessesInaccessibleMemOrArgMem())
623 Min = FunctionModRefBehavior(Min & FMRB_OnlyAccessesInaccessibleOrArgMem);
Igor Laevsky39d662f2015-07-11 10:30:36 +0000624
Chandler Carruth12884f72016-03-02 15:56:53 +0000625 // If CS has operand bundles then aliasing attributes from the function it
626 // calls do not directly apply to the CallSite. This can be made more
627 // precise in the future.
628 if (!CS.hasOperandBundles())
629 if (const Function *F = CS.getCalledFunction())
630 Min =
631 FunctionModRefBehavior(Min & getBestAAResults().getModRefBehavior(F));
632
633 return Min;
Dan Gohman5f1702e2010-08-06 01:25:49 +0000634}
635
Chandler Carruthc5d81122015-08-06 08:17:06 +0000636/// Returns the behavior when calling the given function. For use when the call
637/// site is not known.
Chandler Carruth7b560d42015-09-09 17:55:00 +0000638FunctionModRefBehavior BasicAAResult::getModRefBehavior(const Function *F) {
Dan Gohmane461d7d2010-11-08 16:08:43 +0000639 // If the function declares it doesn't access memory, we can't do better.
Dan Gohman5f1702e2010-08-06 01:25:49 +0000640 if (F->doesNotAccessMemory())
Chandler Carruth194f59c2015-07-22 23:15:57 +0000641 return FMRB_DoesNotAccessMemory;
Dan Gohmane461d7d2010-11-08 16:08:43 +0000642
Chandler Carruth194f59c2015-07-22 23:15:57 +0000643 FunctionModRefBehavior Min = FMRB_UnknownModRefBehavior;
Dan Gohman2694e142010-11-10 01:02:18 +0000644
Dan Gohmane461d7d2010-11-08 16:08:43 +0000645 // If the function declares it only reads memory, go with that.
Dan Gohman5f1702e2010-08-06 01:25:49 +0000646 if (F->onlyReadsMemory())
Chandler Carruth194f59c2015-07-22 23:15:57 +0000647 Min = FMRB_OnlyReadsMemory;
Nicolai Haehnle84c9f992016-07-04 08:01:29 +0000648 else if (F->doesNotReadMemory())
649 Min = FMRB_DoesNotReadMemory;
Dan Gohman5f1702e2010-08-06 01:25:49 +0000650
Igor Laevsky39d662f2015-07-11 10:30:36 +0000651 if (F->onlyAccessesArgMemory())
Chandler Carruth194f59c2015-07-22 23:15:57 +0000652 Min = FunctionModRefBehavior(Min & FMRB_OnlyAccessesArgumentPointees);
Andrew Kaylor9604f342016-11-08 21:07:42 +0000653 else if (F->onlyAccessesInaccessibleMemory())
654 Min = FunctionModRefBehavior(Min & FMRB_OnlyAccessesInaccessibleMem);
655 else if (F->onlyAccessesInaccessibleMemOrArgMem())
656 Min = FunctionModRefBehavior(Min & FMRB_OnlyAccessesInaccessibleOrArgMem);
Igor Laevsky39d662f2015-07-11 10:30:36 +0000657
Chandler Carruth12884f72016-03-02 15:56:53 +0000658 return Min;
Dan Gohman5f1702e2010-08-06 01:25:49 +0000659}
Owen Anderson98a36172009-02-05 23:36:27 +0000660
Nicolai Haehnle84c9f992016-07-04 08:01:29 +0000661/// Returns true if this is a writeonly (i.e Mod only) parameter.
Philip Reamesfe46cad2016-01-06 18:10:35 +0000662static bool isWriteOnlyParam(ImmutableCallSite CS, unsigned ArgIdx,
663 const TargetLibraryInfo &TLI) {
Reid Klecknerfb502d22017-04-14 20:19:02 +0000664 if (CS.paramHasAttr(ArgIdx, Attribute::WriteOnly))
Nicolai Haehnle84c9f992016-07-04 08:01:29 +0000665 return true;
Hal Finkel354e23b2014-07-17 01:28:25 +0000666
667 // We can bound the aliasing properties of memset_pattern16 just as we can
668 // for memcpy/memset. This is particularly important because the
669 // LoopIdiomRecognizer likes to turn loops into calls to memset_pattern16
Nicolai Haehnle84c9f992016-07-04 08:01:29 +0000670 // whenever possible.
671 // FIXME Consider handling this in InferFunctionAttr.cpp together with other
672 // attributes.
David L. Jonesd21529f2017-01-23 23:16:46 +0000673 LibFunc F;
Ahmed Bougachad765a822016-04-27 19:04:35 +0000674 if (CS.getCalledFunction() && TLI.getLibFunc(*CS.getCalledFunction(), F) &&
David L. Jonesd21529f2017-01-23 23:16:46 +0000675 F == LibFunc_memset_pattern16 && TLI.has(F))
Philip Reamesae050a52016-01-06 04:53:16 +0000676 if (ArgIdx == 0)
Philip Reamesfe46cad2016-01-06 18:10:35 +0000677 return true;
678
679 // TODO: memset_pattern4, memset_pattern8
680 // TODO: _chk variants
681 // TODO: strcmp, strcpy
682
683 return false;
684}
685
686ModRefInfo BasicAAResult::getArgModRefInfo(ImmutableCallSite CS,
687 unsigned ArgIdx) {
Nicolai Haehnle84c9f992016-07-04 08:01:29 +0000688 // Checking for known builtin intrinsics and target library functions.
Philip Reamesfe46cad2016-01-06 18:10:35 +0000689 if (isWriteOnlyParam(CS, ArgIdx, TLI))
Alina Sbirlea193429f2017-12-07 22:41:34 +0000690 return ModRefInfo::Mod;
Hal Finkel354e23b2014-07-17 01:28:25 +0000691
Reid Klecknerfb502d22017-04-14 20:19:02 +0000692 if (CS.paramHasAttr(ArgIdx, Attribute::ReadOnly))
Alina Sbirlea193429f2017-12-07 22:41:34 +0000693 return ModRefInfo::Ref;
Igor Laevsky36e84c02015-10-28 16:42:00 +0000694
Reid Klecknerfb502d22017-04-14 20:19:02 +0000695 if (CS.paramHasAttr(ArgIdx, Attribute::ReadNone))
Alina Sbirlea193429f2017-12-07 22:41:34 +0000696 return ModRefInfo::NoModRef;
Igor Laevsky559d1702015-10-28 17:54:48 +0000697
Chandler Carruth7b560d42015-09-09 17:55:00 +0000698 return AAResultBase::getArgModRefInfo(CS, ArgIdx);
Hal Finkel354e23b2014-07-17 01:28:25 +0000699}
700
Sanjoy Dasd47f4242016-05-10 02:35:41 +0000701static bool isIntrinsicCall(ImmutableCallSite CS, Intrinsic::ID IID) {
Hal Finkel93046912014-07-25 21:13:35 +0000702 const IntrinsicInst *II = dyn_cast<IntrinsicInst>(CS.getInstruction());
Sanjoy Dasd47f4242016-05-10 02:35:41 +0000703 return II && II->getIntrinsicID() == IID;
Hal Finkel93046912014-07-25 21:13:35 +0000704}
705
Justin Bognerabdcb3c2015-09-24 05:29:31 +0000706#ifndef NDEBUG
Justin Bogner49655f82015-09-24 04:59:24 +0000707static const Function *getParent(const Value *V) {
Daniel Berlina5130bb2017-05-19 19:01:21 +0000708 if (const Instruction *inst = dyn_cast<Instruction>(V)) {
709 if (!inst->getParent())
710 return nullptr;
Justin Bogner49655f82015-09-24 04:59:24 +0000711 return inst->getParent()->getParent();
Daniel Berlina5130bb2017-05-19 19:01:21 +0000712 }
Justin Bogner49655f82015-09-24 04:59:24 +0000713
714 if (const Argument *arg = dyn_cast<Argument>(V))
715 return arg->getParent();
716
717 return nullptr;
718}
719
720static bool notDifferentParent(const Value *O1, const Value *O2) {
721
722 const Function *F1 = getParent(O1);
723 const Function *F2 = getParent(O2);
724
725 return !F1 || !F2 || F1 == F2;
726}
Justin Bognerabdcb3c2015-09-24 05:29:31 +0000727#endif
Justin Bogner49655f82015-09-24 04:59:24 +0000728
729AliasResult BasicAAResult::alias(const MemoryLocation &LocA,
730 const MemoryLocation &LocB) {
731 assert(notDifferentParent(LocA.Ptr, LocB.Ptr) &&
732 "BasicAliasAnalysis doesn't support interprocedural queries.");
733
734 // If we have a directly cached entry for these locations, we have recursed
735 // through this once, so just return the cached results. Notably, when this
736 // happens, we don't clear the cache.
737 auto CacheIt = AliasCache.find(LocPair(LocA, LocB));
738 if (CacheIt != AliasCache.end())
739 return CacheIt->second;
740
741 AliasResult Alias = aliasCheck(LocA.Ptr, LocA.Size, LocA.AATags, LocB.Ptr,
742 LocB.Size, LocB.AATags);
743 // AliasCache rarely has more than 1 or 2 elements, always use
744 // shrink_and_clear so it quickly returns to the inline capacity of the
745 // SmallDenseMap if it ever grows larger.
746 // FIXME: This should really be shrink_to_inline_capacity_and_clear().
747 AliasCache.shrink_and_clear();
748 VisitedPhiBBs.clear();
749 return Alias;
750}
751
Chandler Carruthc5d81122015-08-06 08:17:06 +0000752/// Checks to see if the specified callsite can clobber the specified memory
753/// object.
754///
755/// Since we only look at local properties of this function, we really can't
756/// say much about this query. We do, however, use simple "address taken"
757/// analysis on local objects.
Chandler Carruth7b560d42015-09-09 17:55:00 +0000758ModRefInfo BasicAAResult::getModRefInfo(ImmutableCallSite CS,
759 const MemoryLocation &Loc) {
Dan Gohman41f14cf2010-09-14 21:25:10 +0000760 assert(notDifferentParent(CS.getInstruction(), Loc.Ptr) &&
Dan Gohman00ef9322010-07-07 14:27:09 +0000761 "AliasAnalysis query involving multiple functions!");
762
Chandler Carruth7b560d42015-09-09 17:55:00 +0000763 const Value *Object = GetUnderlyingObject(Loc.Ptr, DL);
Jakub Staszak07f383f2013-08-24 14:16:00 +0000764
Dan Gohman41f14cf2010-09-14 21:25:10 +0000765 // If this is a tail call and Loc.Ptr points to a stack location, we know that
Chris Lattnerd6a49ad2009-11-22 16:05:05 +0000766 // the tail call cannot access or modify the local stack.
767 // We cannot exclude byval arguments here; these belong to the caller of
768 // the current function not to the current function, and a tail callee
769 // may reference them.
770 if (isa<AllocaInst>(Object))
Dan Gohman5442c712010-08-03 21:48:53 +0000771 if (const CallInst *CI = dyn_cast<CallInst>(CS.getInstruction()))
Chris Lattnerd6a49ad2009-11-22 16:05:05 +0000772 if (CI->isTailCall())
Alina Sbirlea193429f2017-12-07 22:41:34 +0000773 return ModRefInfo::NoModRef;
Jakub Staszak07f383f2013-08-24 14:16:00 +0000774
Chris Lattnerd6a49ad2009-11-22 16:05:05 +0000775 // If the pointer is to a locally allocated object that does not escape,
Chris Lattner84ed59ab2009-11-23 16:44:43 +0000776 // then the call can not mod/ref the pointer unless the call takes the pointer
777 // as an argument, and itself doesn't capture it.
Chris Lattner1e7b37e2009-11-23 16:46:41 +0000778 if (!isa<Constant>(Object) && CS.getInstruction() != Object &&
Dan Gohman84f90a32010-07-01 20:08:40 +0000779 isNonEscapingLocalObject(Object)) {
Igor Laevsky37cba432017-03-01 13:19:51 +0000780
781 // Optimistically assume that call doesn't touch Object and check this
782 // assumption in the following loop.
Alina Sbirlea193429f2017-12-07 22:41:34 +0000783 ModRefInfo Result = ModRefInfo::NoModRef;
Alina Sbirlea50db8a22017-12-21 21:41:53 +0000784 bool IsMustAlias = true;
Igor Laevsky37cba432017-03-01 13:19:51 +0000785
Igor Laevsky28eeb3f2016-01-16 12:15:53 +0000786 unsigned OperandNo = 0;
787 for (auto CI = CS.data_operands_begin(), CE = CS.data_operands_end();
788 CI != CE; ++CI, ++OperandNo) {
Chris Lattner026f5e62011-05-23 05:15:43 +0000789 // Only look at the no-capture or byval pointer arguments. If this
790 // pointer were passed to arguments that were neither of these, then it
791 // couldn't be no-capture.
Duncan Sands19d0b472010-02-16 11:11:14 +0000792 if (!(*CI)->getType()->isPointerTy() ||
Hal Finkel39fed392016-12-15 05:09:15 +0000793 (!CS.doesNotCapture(OperandNo) &&
794 OperandNo < CS.getNumArgOperands() && !CS.isByValArgument(OperandNo)))
Chris Lattner84ed59ab2009-11-23 16:44:43 +0000795 continue;
Jakub Staszak07f383f2013-08-24 14:16:00 +0000796
Igor Laevsky37cba432017-03-01 13:19:51 +0000797 // Call doesn't access memory through this operand, so we don't care
798 // if it aliases with Object.
799 if (CS.doesNotAccessMemory(OperandNo))
800 continue;
801
Dan Gohman41f14cf2010-09-14 21:25:10 +0000802 // If this is a no-capture pointer argument, see if we can tell that it
Igor Laevsky37cba432017-03-01 13:19:51 +0000803 // is impossible to alias the pointer we're checking.
Chandler Carruth7b560d42015-09-09 17:55:00 +0000804 AliasResult AR =
805 getBestAAResults().alias(MemoryLocation(*CI), MemoryLocation(Object));
Alina Sbirlea50db8a22017-12-21 21:41:53 +0000806 if (AR != MustAlias)
807 IsMustAlias = false;
Igor Laevsky37cba432017-03-01 13:19:51 +0000808 // Operand doesnt alias 'Object', continue looking for other aliases
809 if (AR == NoAlias)
810 continue;
811 // Operand aliases 'Object', but call doesn't modify it. Strengthen
812 // initial assumption and keep looking in case if there are more aliases.
813 if (CS.onlyReadsMemory(OperandNo)) {
Alina Sbirlea63d22502017-12-05 20:12:23 +0000814 Result = setRef(Result);
Igor Laevsky37cba432017-03-01 13:19:51 +0000815 continue;
Chris Lattner84ed59ab2009-11-23 16:44:43 +0000816 }
Igor Laevsky37cba432017-03-01 13:19:51 +0000817 // Operand aliases 'Object' but call only writes into it.
818 if (CS.doesNotReadMemory(OperandNo)) {
Alina Sbirlea63d22502017-12-05 20:12:23 +0000819 Result = setMod(Result);
Igor Laevsky37cba432017-03-01 13:19:51 +0000820 continue;
821 }
822 // This operand aliases 'Object' and call reads and writes into it.
Alina Sbirlea50db8a22017-12-21 21:41:53 +0000823 // Setting ModRef will not yield an early return below, MustAlias is not
824 // used further.
Alina Sbirlea193429f2017-12-07 22:41:34 +0000825 Result = ModRefInfo::ModRef;
Igor Laevsky37cba432017-03-01 13:19:51 +0000826 break;
Chris Lattner84ed59ab2009-11-23 16:44:43 +0000827 }
Jakub Staszak07f383f2013-08-24 14:16:00 +0000828
Alina Sbirlea50db8a22017-12-21 21:41:53 +0000829 // No operand aliases, reset Must bit. Add below if at least one aliases
830 // and all aliases found are MustAlias.
831 if (isNoModRef(Result))
832 IsMustAlias = false;
833
Igor Laevsky37cba432017-03-01 13:19:51 +0000834 // Early return if we improved mod ref information
Alina Sbirlead6037eb2017-12-07 00:43:19 +0000835 if (!isModAndRefSet(Result))
Alina Sbirlea50db8a22017-12-21 21:41:53 +0000836 return IsMustAlias ? setMust(Result) : clearMust(Result);
Chris Lattnerd6a49ad2009-11-22 16:05:05 +0000837 }
838
Philip Reamesd9f4a3d2016-03-09 23:19:56 +0000839 // If the CallSite is to malloc or calloc, we can assume that it doesn't
840 // modify any IR visible value. This is only valid because we assume these
841 // routines do not read values visible in the IR. TODO: Consider special
842 // casing realloc and strdup routines which access only their arguments as
843 // well. Or alternatively, replace all of this with inaccessiblememonly once
Alina Sbirlea63d22502017-12-05 20:12:23 +0000844 // that's implemented fully.
Philip Reamesd9f4a3d2016-03-09 23:19:56 +0000845 auto *Inst = CS.getInstruction();
Craig Topper09bb7602017-04-18 21:43:46 +0000846 if (isMallocOrCallocLikeFn(Inst, &TLI)) {
Philip Reamesd9f4a3d2016-03-09 23:19:56 +0000847 // Be conservative if the accessed pointer may alias the allocation -
848 // fallback to the generic handling below.
849 if (getBestAAResults().alias(MemoryLocation(Inst), Loc) == NoAlias)
Alina Sbirlea193429f2017-12-07 22:41:34 +0000850 return ModRefInfo::NoModRef;
Philip Reamesd9f4a3d2016-03-09 23:19:56 +0000851 }
852
Bryant Wonga07d9b12016-12-25 22:42:27 +0000853 // The semantics of memcpy intrinsics forbid overlap between their respective
854 // operands, i.e., source and destination of any given memcpy must no-alias.
855 // If Loc must-aliases either one of these two locations, then it necessarily
856 // no-aliases the other.
857 if (auto *Inst = dyn_cast<MemCpyInst>(CS.getInstruction())) {
858 AliasResult SrcAA, DestAA;
859
860 if ((SrcAA = getBestAAResults().alias(MemoryLocation::getForSource(Inst),
861 Loc)) == MustAlias)
862 // Loc is exactly the memcpy source thus disjoint from memcpy dest.
Alina Sbirlea193429f2017-12-07 22:41:34 +0000863 return ModRefInfo::Ref;
Bryant Wonga07d9b12016-12-25 22:42:27 +0000864 if ((DestAA = getBestAAResults().alias(MemoryLocation::getForDest(Inst),
865 Loc)) == MustAlias)
866 // The converse case.
Alina Sbirlea193429f2017-12-07 22:41:34 +0000867 return ModRefInfo::Mod;
Bryant Wonga07d9b12016-12-25 22:42:27 +0000868
869 // It's also possible for Loc to alias both src and dest, or neither.
Alina Sbirlea193429f2017-12-07 22:41:34 +0000870 ModRefInfo rv = ModRefInfo::NoModRef;
Bryant Wonga07d9b12016-12-25 22:42:27 +0000871 if (SrcAA != NoAlias)
Alina Sbirlea63d22502017-12-05 20:12:23 +0000872 rv = setRef(rv);
Bryant Wonga07d9b12016-12-25 22:42:27 +0000873 if (DestAA != NoAlias)
Alina Sbirlea63d22502017-12-05 20:12:23 +0000874 rv = setMod(rv);
Bryant Wonga07d9b12016-12-25 22:42:27 +0000875 return rv;
876 }
877
Hal Finkel93046912014-07-25 21:13:35 +0000878 // While the assume intrinsic is marked as arbitrarily writing so that
879 // proper control dependencies will be maintained, it never aliases any
880 // particular memory location.
Sanjoy Dasd47f4242016-05-10 02:35:41 +0000881 if (isIntrinsicCall(CS, Intrinsic::assume))
Alina Sbirlea193429f2017-12-07 22:41:34 +0000882 return ModRefInfo::NoModRef;
Hal Finkel93046912014-07-25 21:13:35 +0000883
Sanjoy Dasd47f4242016-05-10 02:35:41 +0000884 // Like assumes, guard intrinsics are also marked as arbitrarily writing so
885 // that proper control dependencies are maintained but they never mods any
886 // particular memory location.
887 //
888 // *Unlike* assumes, guard intrinsics are modeled as reading memory since the
889 // heap state at the point the guard is issued needs to be consistent in case
890 // the guard invokes the "deopt" continuation.
891 if (isIntrinsicCall(CS, Intrinsic::experimental_guard))
Alina Sbirlea193429f2017-12-07 22:41:34 +0000892 return ModRefInfo::Ref;
Sanjoy Dasd47f4242016-05-10 02:35:41 +0000893
Anna Thomas037e5402016-08-09 17:18:05 +0000894 // Like assumes, invariant.start intrinsics were also marked as arbitrarily
895 // writing so that proper control dependencies are maintained but they never
896 // mod any particular memory location visible to the IR.
897 // *Unlike* assumes (which are now modeled as NoModRef), invariant.start
898 // intrinsic is now modeled as reading memory. This prevents hoisting the
899 // invariant.start intrinsic over stores. Consider:
900 // *ptr = 40;
901 // *ptr = 50;
902 // invariant_start(ptr)
903 // int val = *ptr;
904 // print(val);
905 //
906 // This cannot be transformed to:
907 //
908 // *ptr = 40;
909 // invariant_start(ptr)
910 // *ptr = 50;
911 // int val = *ptr;
912 // print(val);
913 //
914 // The transformation will cause the second store to be ignored (based on
915 // rules of invariant.start) and print 40, while the first program always
916 // prints 50.
917 if (isIntrinsicCall(CS, Intrinsic::invariant_start))
Alina Sbirlea193429f2017-12-07 22:41:34 +0000918 return ModRefInfo::Ref;
Anna Thomas037e5402016-08-09 17:18:05 +0000919
Chandler Carruth7b560d42015-09-09 17:55:00 +0000920 // The AAResultBase base class has some smarts, lets use them.
921 return AAResultBase::getModRefInfo(CS, Loc);
Dan Gohman64d842e2010-09-08 01:32:20 +0000922}
Chris Lattner2d332972008-06-16 06:30:22 +0000923
Chandler Carruth7b560d42015-09-09 17:55:00 +0000924ModRefInfo BasicAAResult::getModRefInfo(ImmutableCallSite CS1,
925 ImmutableCallSite CS2) {
Hal Finkel93046912014-07-25 21:13:35 +0000926 // While the assume intrinsic is marked as arbitrarily writing so that
927 // proper control dependencies will be maintained, it never aliases any
928 // particular memory location.
Sanjoy Dasd47f4242016-05-10 02:35:41 +0000929 if (isIntrinsicCall(CS1, Intrinsic::assume) ||
930 isIntrinsicCall(CS2, Intrinsic::assume))
Alina Sbirlea193429f2017-12-07 22:41:34 +0000931 return ModRefInfo::NoModRef;
Hal Finkel93046912014-07-25 21:13:35 +0000932
Sanjoy Dasd47f4242016-05-10 02:35:41 +0000933 // Like assumes, guard intrinsics are also marked as arbitrarily writing so
934 // that proper control dependencies are maintained but they never mod any
935 // particular memory location.
936 //
937 // *Unlike* assumes, guard intrinsics are modeled as reading memory since the
938 // heap state at the point the guard is issued needs to be consistent in case
939 // the guard invokes the "deopt" continuation.
940
941 // NB! This function is *not* commutative, so we specical case two
942 // possibilities for guard intrinsics.
943
944 if (isIntrinsicCall(CS1, Intrinsic::experimental_guard))
Alina Sbirlea193429f2017-12-07 22:41:34 +0000945 return isModSet(createModRefInfo(getModRefBehavior(CS2)))
946 ? ModRefInfo::Ref
947 : ModRefInfo::NoModRef;
Sanjoy Dasd47f4242016-05-10 02:35:41 +0000948
949 if (isIntrinsicCall(CS2, Intrinsic::experimental_guard))
Alina Sbirlea193429f2017-12-07 22:41:34 +0000950 return isModSet(createModRefInfo(getModRefBehavior(CS1)))
951 ? ModRefInfo::Mod
952 : ModRefInfo::NoModRef;
Sanjoy Dasd47f4242016-05-10 02:35:41 +0000953
Chandler Carruth7b560d42015-09-09 17:55:00 +0000954 // The AAResultBase base class has some smarts, lets use them.
955 return AAResultBase::getModRefInfo(CS1, CS2);
Hal Finkel93046912014-07-25 21:13:35 +0000956}
957
Chandler Carruthc5d81122015-08-06 08:17:06 +0000958/// Provide ad-hoc rules to disambiguate accesses through two GEP operators,
959/// both having the exact same pointer operand.
NAKAMURA Takumi76bab1f2017-07-11 02:31:51 +0000960static AliasResult aliasSameBasePointerGEPs(const GEPOperator *GEP1,
961 uint64_t V1Size,
962 const GEPOperator *GEP2,
963 uint64_t V2Size,
964 const DataLayout &DL) {
Piotr Padlewski610c9662017-04-24 19:37:17 +0000965 assert(GEP1->getPointerOperand()->stripPointerCastsAndBarriers() ==
966 GEP2->getPointerOperand()->stripPointerCastsAndBarriers() &&
Sanjoy Dasf09c1e32017-04-18 22:00:54 +0000967 GEP1->getPointerOperandType() == GEP2->getPointerOperandType() &&
Ahmed Bougacha29efe3b2015-02-07 17:04:29 +0000968 "Expected GEPs with the same pointer operand");
969
970 // Try to determine whether GEP1 and GEP2 index through arrays, into structs,
971 // such that the struct field accesses provably cannot alias.
972 // We also need at least two indices (the pointer, and the struct field).
Daniel Berlin73694bb2016-06-01 18:55:32 +0000973 if (GEP1->getNumIndices() != GEP2->getNumIndices() ||
974 GEP1->getNumIndices() < 2)
Chandler Carruthc3f49eb2015-06-22 02:16:51 +0000975 return MayAlias;
Ahmed Bougacha29efe3b2015-02-07 17:04:29 +0000976
977 // If we don't know the size of the accesses through both GEPs, we can't
978 // determine whether the struct fields accessed can't alias.
Chandler Carruthecbd1682015-06-17 07:21:38 +0000979 if (V1Size == MemoryLocation::UnknownSize ||
980 V2Size == MemoryLocation::UnknownSize)
Chandler Carruthc3f49eb2015-06-22 02:16:51 +0000981 return MayAlias;
Ahmed Bougacha29efe3b2015-02-07 17:04:29 +0000982
983 ConstantInt *C1 =
984 dyn_cast<ConstantInt>(GEP1->getOperand(GEP1->getNumOperands() - 1));
985 ConstantInt *C2 =
986 dyn_cast<ConstantInt>(GEP2->getOperand(GEP2->getNumOperands() - 1));
987
James Molloy5a4d8cd2015-10-22 13:28:18 +0000988 // If the last (struct) indices are constants and are equal, the other indices
989 // might be also be dynamically equal, so the GEPs can alias.
Vedant Kumaree202942016-05-11 15:45:43 +0000990 if (C1 && C2 && C1->getSExtValue() == C2->getSExtValue())
Chandler Carruthc3f49eb2015-06-22 02:16:51 +0000991 return MayAlias;
Ahmed Bougacha29efe3b2015-02-07 17:04:29 +0000992
993 // Find the last-indexed type of the GEP, i.e., the type you'd get if
994 // you stripped the last index.
995 // On the way, look at each indexed type. If there's something other
996 // than an array, different indices can lead to different final types.
997 SmallVector<Value *, 8> IntermediateIndices;
998
999 // Insert the first index; we don't need to check the type indexed
1000 // through it as it only drops the pointer indirection.
1001 assert(GEP1->getNumIndices() > 1 && "Not enough GEP indices to examine");
1002 IntermediateIndices.push_back(GEP1->getOperand(1));
1003
1004 // Insert all the remaining indices but the last one.
1005 // Also, check that they all index through arrays.
1006 for (unsigned i = 1, e = GEP1->getNumIndices() - 1; i != e; ++i) {
1007 if (!isa<ArrayType>(GetElementPtrInst::getIndexedType(
David Blaikied288fb82015-03-30 21:41:43 +00001008 GEP1->getSourceElementType(), IntermediateIndices)))
Chandler Carruthc3f49eb2015-06-22 02:16:51 +00001009 return MayAlias;
Ahmed Bougacha29efe3b2015-02-07 17:04:29 +00001010 IntermediateIndices.push_back(GEP1->getOperand(i + 1));
1011 }
1012
James Molloy5a4d8cd2015-10-22 13:28:18 +00001013 auto *Ty = GetElementPtrInst::getIndexedType(
1014 GEP1->getSourceElementType(), IntermediateIndices);
1015 StructType *LastIndexedStruct = dyn_cast<StructType>(Ty);
Ahmed Bougacha29efe3b2015-02-07 17:04:29 +00001016
James Molloy5a4d8cd2015-10-22 13:28:18 +00001017 if (isa<SequentialType>(Ty)) {
1018 // We know that:
1019 // - both GEPs begin indexing from the exact same pointer;
1020 // - the last indices in both GEPs are constants, indexing into a sequential
1021 // type (array or pointer);
1022 // - both GEPs only index through arrays prior to that.
1023 //
1024 // Because array indices greater than the number of elements are valid in
1025 // GEPs, unless we know the intermediate indices are identical between
1026 // GEP1 and GEP2 we cannot guarantee that the last indexed arrays don't
James Molloy05a896a2015-10-23 14:17:03 +00001027 // partially overlap. We also need to check that the loaded size matches
1028 // the element size, otherwise we could still have overlap.
1029 const uint64_t ElementSize =
1030 DL.getTypeStoreSize(cast<SequentialType>(Ty)->getElementType());
1031 if (V1Size != ElementSize || V2Size != ElementSize)
1032 return MayAlias;
1033
James Molloy5a4d8cd2015-10-22 13:28:18 +00001034 for (unsigned i = 0, e = GEP1->getNumIndices() - 1; i != e; ++i)
1035 if (GEP1->getOperand(i + 1) != GEP2->getOperand(i + 1))
1036 return MayAlias;
James Molloy05a896a2015-10-23 14:17:03 +00001037
James Molloy5a4d8cd2015-10-22 13:28:18 +00001038 // Now we know that the array/pointer that GEP1 indexes into and that
1039 // that GEP2 indexes into must either precisely overlap or be disjoint.
1040 // Because they cannot partially overlap and because fields in an array
1041 // cannot overlap, if we can prove the final indices are different between
1042 // GEP1 and GEP2, we can conclude GEP1 and GEP2 don't alias.
NAKAMURA Takumia089dd82017-07-11 02:31:54 +00001043
James Molloy5a4d8cd2015-10-22 13:28:18 +00001044 // If the last indices are constants, we've already checked they don't
1045 // equal each other so we can exit early.
1046 if (C1 && C2)
1047 return NoAlias;
Craig Topper58752542017-06-15 17:16:56 +00001048 {
1049 Value *GEP1LastIdx = GEP1->getOperand(GEP1->getNumOperands() - 1);
1050 Value *GEP2LastIdx = GEP2->getOperand(GEP2->getNumOperands() - 1);
NAKAMURA Takumi76bab1f2017-07-11 02:31:51 +00001051 if (isa<PHINode>(GEP1LastIdx) || isa<PHINode>(GEP2LastIdx)) {
Craig Topper58752542017-06-15 17:16:56 +00001052 // If one of the indices is a PHI node, be safe and only use
1053 // computeKnownBits so we don't make any assumptions about the
1054 // relationships between the two indices. This is important if we're
1055 // asking about values from different loop iterations. See PR32314.
1056 // TODO: We may be able to change the check so we only do this when
1057 // we definitely looked through a PHINode.
Craig Topperd3711ee2017-06-22 19:04:14 +00001058 if (GEP1LastIdx != GEP2LastIdx &&
1059 GEP1LastIdx->getType() == GEP2LastIdx->getType()) {
1060 KnownBits Known1 = computeKnownBits(GEP1LastIdx, DL);
1061 KnownBits Known2 = computeKnownBits(GEP2LastIdx, DL);
1062 if (Known1.Zero.intersects(Known2.One) ||
1063 Known1.One.intersects(Known2.Zero))
1064 return NoAlias;
1065 }
Craig Topper58752542017-06-15 17:16:56 +00001066 } else if (isKnownNonEqual(GEP1LastIdx, GEP2LastIdx, DL))
1067 return NoAlias;
1068 }
Chandler Carruthc3f49eb2015-06-22 02:16:51 +00001069 return MayAlias;
James Molloy5a4d8cd2015-10-22 13:28:18 +00001070 } else if (!LastIndexedStruct || !C1 || !C2) {
1071 return MayAlias;
1072 }
Ahmed Bougacha29efe3b2015-02-07 17:04:29 +00001073
1074 // We know that:
1075 // - both GEPs begin indexing from the exact same pointer;
1076 // - the last indices in both GEPs are constants, indexing into a struct;
1077 // - said indices are different, hence, the pointed-to fields are different;
1078 // - both GEPs only index through arrays prior to that.
1079 //
1080 // This lets us determine that the struct that GEP1 indexes into and the
1081 // struct that GEP2 indexes into must either precisely overlap or be
1082 // completely disjoint. Because they cannot partially overlap, indexing into
1083 // different non-overlapping fields of the struct will never alias.
1084
1085 // Therefore, the only remaining thing needed to show that both GEPs can't
1086 // alias is that the fields are not overlapping.
1087 const StructLayout *SL = DL.getStructLayout(LastIndexedStruct);
1088 const uint64_t StructSize = SL->getSizeInBytes();
1089 const uint64_t V1Off = SL->getElementOffset(C1->getZExtValue());
1090 const uint64_t V2Off = SL->getElementOffset(C2->getZExtValue());
1091
1092 auto EltsDontOverlap = [StructSize](uint64_t V1Off, uint64_t V1Size,
1093 uint64_t V2Off, uint64_t V2Size) {
1094 return V1Off < V2Off && V1Off + V1Size <= V2Off &&
1095 ((V2Off + V2Size <= StructSize) ||
1096 (V2Off + V2Size - StructSize <= V1Off));
1097 };
1098
1099 if (EltsDontOverlap(V1Off, V1Size, V2Off, V2Size) ||
1100 EltsDontOverlap(V2Off, V2Size, V1Off, V1Size))
Chandler Carruthc3f49eb2015-06-22 02:16:51 +00001101 return NoAlias;
Ahmed Bougacha29efe3b2015-02-07 17:04:29 +00001102
Chandler Carruthc3f49eb2015-06-22 02:16:51 +00001103 return MayAlias;
Ahmed Bougacha29efe3b2015-02-07 17:04:29 +00001104}
1105
Michael Kuperstein82069c42016-05-25 22:23:08 +00001106// If a we have (a) a GEP and (b) a pointer based on an alloca, and the
1107// beginning of the object the GEP points would have a negative offset with
1108// repsect to the alloca, that means the GEP can not alias pointer (b).
1109// Note that the pointer based on the alloca may not be a GEP. For
1110// example, it may be the alloca itself.
Michael Kupersteinae214912016-05-26 19:30:49 +00001111// The same applies if (b) is based on a GlobalVariable. Note that just being
1112// based on isIdentifiedObject() is not enough - we need an identified object
1113// that does not permit access to negative offsets. For example, a negative
1114// offset from a noalias argument or call can be inbounds w.r.t the actual
1115// underlying object.
Michael Kuperstein82069c42016-05-25 22:23:08 +00001116//
1117// For example, consider:
1118//
1119// struct { int f0, int f1, ...} foo;
1120// foo alloca;
1121// foo* random = bar(alloca);
1122// int *f0 = &alloca.f0
1123// int *f1 = &random->f1;
1124//
1125// Which is lowered, approximately, to:
1126//
1127// %alloca = alloca %struct.foo
1128// %random = call %struct.foo* @random(%struct.foo* %alloca)
1129// %f0 = getelementptr inbounds %struct, %struct.foo* %alloca, i32 0, i32 0
1130// %f1 = getelementptr inbounds %struct, %struct.foo* %random, i32 0, i32 1
1131//
1132// Assume %f1 and %f0 alias. Then %f1 would point into the object allocated
1133// by %alloca. Since the %f1 GEP is inbounds, that means %random must also
1134// point into the same object. But since %f0 points to the beginning of %alloca,
1135// the highest %f1 can be is (%alloca + 3). This means %random can not be higher
1136// than (%alloca - 1), and so is not inbounds, a contradiction.
1137bool BasicAAResult::isGEPBaseAtNegativeOffset(const GEPOperator *GEPOp,
Michael Kupersteinae214912016-05-26 19:30:49 +00001138 const DecomposedGEP &DecompGEP, const DecomposedGEP &DecompObject,
1139 uint64_t ObjectAccessSize) {
1140 // If the object access size is unknown, or the GEP isn't inbounds, bail.
1141 if (ObjectAccessSize == MemoryLocation::UnknownSize || !GEPOp->isInBounds())
Michael Kuperstein82069c42016-05-25 22:23:08 +00001142 return false;
1143
Michael Kupersteinae214912016-05-26 19:30:49 +00001144 // We need the object to be an alloca or a globalvariable, and want to know
1145 // the offset of the pointer from the object precisely, so no variable
1146 // indices are allowed.
1147 if (!(isa<AllocaInst>(DecompObject.Base) ||
1148 isa<GlobalVariable>(DecompObject.Base)) ||
1149 !DecompObject.VarIndices.empty())
Michael Kuperstein82069c42016-05-25 22:23:08 +00001150 return false;
1151
Michael Kupersteinae214912016-05-26 19:30:49 +00001152 int64_t ObjectBaseOffset = DecompObject.StructOffset +
1153 DecompObject.OtherOffset;
Michael Kuperstein82069c42016-05-25 22:23:08 +00001154
1155 // If the GEP has no variable indices, we know the precise offset
1156 // from the base, then use it. If the GEP has variable indices, we're in
1157 // a bit more trouble: we can't count on the constant offsets that come
1158 // from non-struct sources, since these can be "rewound" by a negative
1159 // variable offset. So use only offsets that came from structs.
1160 int64_t GEPBaseOffset = DecompGEP.StructOffset;
1161 if (DecompGEP.VarIndices.empty())
1162 GEPBaseOffset += DecompGEP.OtherOffset;
1163
Michael Kupersteinae214912016-05-26 19:30:49 +00001164 return (GEPBaseOffset >= ObjectBaseOffset + (int64_t)ObjectAccessSize);
Michael Kuperstein82069c42016-05-25 22:23:08 +00001165}
1166
Chandler Carruthc5d81122015-08-06 08:17:06 +00001167/// Provides a bunch of ad-hoc rules to disambiguate a GEP instruction against
1168/// another pointer.
Chris Lattnera99edbe2009-11-26 02:11:08 +00001169///
Chandler Carruthc5d81122015-08-06 08:17:06 +00001170/// We know that V1 is a GEP, but we don't know anything about V2.
1171/// UnderlyingV1 is GetUnderlyingObject(GEP1, DL), UnderlyingV2 is the same for
1172/// V2.
Chandler Carruth7b560d42015-09-09 17:55:00 +00001173AliasResult BasicAAResult::aliasGEP(const GEPOperator *GEP1, uint64_t V1Size,
1174 const AAMDNodes &V1AAInfo, const Value *V2,
1175 uint64_t V2Size, const AAMDNodes &V2AAInfo,
1176 const Value *UnderlyingV1,
1177 const Value *UnderlyingV2) {
Michael Kuperstein82069c42016-05-25 22:23:08 +00001178 DecomposedGEP DecompGEP1, DecompGEP2;
1179 bool GEP1MaxLookupReached =
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001180 DecomposeGEPExpression(GEP1, DecompGEP1, DL, &AC, DT);
Michael Kuperstein82069c42016-05-25 22:23:08 +00001181 bool GEP2MaxLookupReached =
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001182 DecomposeGEPExpression(V2, DecompGEP2, DL, &AC, DT);
Chris Lattner7a5b56a2009-11-26 02:17:34 +00001183
Michael Kuperstein82069c42016-05-25 22:23:08 +00001184 int64_t GEP1BaseOffset = DecompGEP1.StructOffset + DecompGEP1.OtherOffset;
1185 int64_t GEP2BaseOffset = DecompGEP2.StructOffset + DecompGEP2.OtherOffset;
1186
1187 assert(DecompGEP1.Base == UnderlyingV1 && DecompGEP2.Base == UnderlyingV2 &&
1188 "DecomposeGEPExpression returned a result different from "
1189 "GetUnderlyingObject");
1190
1191 // If the GEP's offset relative to its base is such that the base would
1192 // fall below the start of the object underlying V2, then the GEP and V2
1193 // cannot alias.
1194 if (!GEP1MaxLookupReached && !GEP2MaxLookupReached &&
1195 isGEPBaseAtNegativeOffset(GEP1, DecompGEP1, DecompGEP2, V2Size))
1196 return NoAlias;
Arnold Schwaighofer76dca582012-09-06 14:31:51 +00001197 // If we have two gep instructions with must-alias or not-alias'ing base
1198 // pointers, figure out if the indexes to the GEP tell us anything about the
1199 // derived pointer.
Chris Lattnera99edbe2009-11-26 02:11:08 +00001200 if (const GEPOperator *GEP2 = dyn_cast<GEPOperator>(V2)) {
Michael Kuperstein82069c42016-05-25 22:23:08 +00001201 // Check for the GEP base being at a negative offset, this time in the other
1202 // direction.
1203 if (!GEP1MaxLookupReached && !GEP2MaxLookupReached &&
1204 isGEPBaseAtNegativeOffset(GEP2, DecompGEP2, DecompGEP1, V1Size))
1205 return NoAlias;
Arnold Schwaighoferaadf1042013-03-26 18:07:53 +00001206 // Do the base pointers alias?
Chandler Carruthecbd1682015-06-17 07:21:38 +00001207 AliasResult BaseAlias =
1208 aliasCheck(UnderlyingV1, MemoryLocation::UnknownSize, AAMDNodes(),
1209 UnderlyingV2, MemoryLocation::UnknownSize, AAMDNodes());
Arnold Schwaighoferaadf1042013-03-26 18:07:53 +00001210
Arnold Schwaighofer76dca582012-09-06 14:31:51 +00001211 // Check for geps of non-aliasing underlying pointers where the offsets are
1212 // identical.
Arnold Schwaighoferaadf1042013-03-26 18:07:53 +00001213 if ((BaseAlias == MayAlias) && V1Size == V2Size) {
Arnold Schwaighofer76dca582012-09-06 14:31:51 +00001214 // Do the base pointers alias assuming type and size.
Chandler Carruth903c5f92015-08-06 07:57:58 +00001215 AliasResult PreciseBaseAlias = aliasCheck(UnderlyingV1, V1Size, V1AAInfo,
1216 UnderlyingV2, V2Size, V2AAInfo);
Arnold Schwaighofer76dca582012-09-06 14:31:51 +00001217 if (PreciseBaseAlias == NoAlias) {
1218 // See if the computed offset from the common pointer tells us about the
1219 // relation of the resulting pointer.
Arnold Schwaighofer1a444482014-03-26 21:30:19 +00001220 // If the max search depth is reached the result is undefined
1221 if (GEP2MaxLookupReached || GEP1MaxLookupReached)
1222 return MayAlias;
1223
Arnold Schwaighofer76dca582012-09-06 14:31:51 +00001224 // Same offsets.
1225 if (GEP1BaseOffset == GEP2BaseOffset &&
Michael Kuperstein82069c42016-05-25 22:23:08 +00001226 DecompGEP1.VarIndices == DecompGEP2.VarIndices)
Arnold Schwaighofer76dca582012-09-06 14:31:51 +00001227 return NoAlias;
Arnold Schwaighofer76dca582012-09-06 14:31:51 +00001228 }
1229 }
Jakub Staszak07f383f2013-08-24 14:16:00 +00001230
Chris Lattner7a5b56a2009-11-26 02:17:34 +00001231 // If we get a No or May, then return it immediately, no amount of analysis
1232 // will improve this situation.
Nuno Lopesc7d41102017-08-08 16:13:24 +00001233 if (BaseAlias != MustAlias) {
1234 assert(BaseAlias == NoAlias || BaseAlias == MayAlias);
Chandler Carruth903c5f92015-08-06 07:57:58 +00001235 return BaseAlias;
Nuno Lopesc7d41102017-08-08 16:13:24 +00001236 }
Jakub Staszak07f383f2013-08-24 14:16:00 +00001237
Chris Lattner7a5b56a2009-11-26 02:17:34 +00001238 // Otherwise, we have a MustAlias. Since the base pointers alias each other
1239 // exactly, see if the computed offset from the common pointer tells us
1240 // about the relation of the resulting pointer.
Ahmed Bougacha29efe3b2015-02-07 17:04:29 +00001241 // If we know the two GEPs are based off of the exact same pointer (and not
1242 // just the same underlying object), see if that tells us anything about
1243 // the resulting pointers.
Piotr Padlewski610c9662017-04-24 19:37:17 +00001244 if (GEP1->getPointerOperand()->stripPointerCastsAndBarriers() ==
1245 GEP2->getPointerOperand()->stripPointerCastsAndBarriers() &&
Sanjoy Dasf09c1e32017-04-18 22:00:54 +00001246 GEP1->getPointerOperandType() == GEP2->getPointerOperandType()) {
Chandler Carruth7b560d42015-09-09 17:55:00 +00001247 AliasResult R = aliasSameBasePointerGEPs(GEP1, V1Size, GEP2, V2Size, DL);
Ahmed Bougacha29efe3b2015-02-07 17:04:29 +00001248 // If we couldn't find anything interesting, don't abandon just yet.
1249 if (R != MayAlias)
1250 return R;
1251 }
1252
Sanjay Patel9613b292016-01-17 23:13:48 +00001253 // If the max search depth is reached, the result is undefined
Arnold Schwaighofer1a444482014-03-26 21:30:19 +00001254 if (GEP2MaxLookupReached || GEP1MaxLookupReached)
1255 return MayAlias;
Jakub Staszak07f383f2013-08-24 14:16:00 +00001256
Chris Lattner7a5b56a2009-11-26 02:17:34 +00001257 // Subtract the GEP2 pointer from the GEP1 pointer to find out their
1258 // symbolic difference.
1259 GEP1BaseOffset -= GEP2BaseOffset;
Michael Kuperstein82069c42016-05-25 22:23:08 +00001260 GetIndexDifference(DecompGEP1.VarIndices, DecompGEP2.VarIndices);
Jakub Staszak07f383f2013-08-24 14:16:00 +00001261
Chris Lattner7a5b56a2009-11-26 02:17:34 +00001262 } else {
1263 // Check to see if these two pointers are related by the getelementptr
1264 // instruction. If one pointer is a GEP with a non-zero index of the other
1265 // pointer, we know they cannot alias.
Chris Lattner5c1cfc22009-11-26 16:52:32 +00001266
1267 // If both accesses are unknown size, we can't do anything useful here.
Chandler Carruthecbd1682015-06-17 07:21:38 +00001268 if (V1Size == MemoryLocation::UnknownSize &&
1269 V2Size == MemoryLocation::UnknownSize)
Chris Lattner7a5b56a2009-11-26 02:17:34 +00001270 return MayAlias;
Chris Lattner6ea17f77f2003-12-11 22:44:13 +00001271
Chandler Carruthecbd1682015-06-17 07:21:38 +00001272 AliasResult R = aliasCheck(UnderlyingV1, MemoryLocation::UnknownSize,
Mehdi Amini1726fc62017-01-27 16:12:22 +00001273 AAMDNodes(), V2, MemoryLocation::UnknownSize,
1274 V2AAInfo, nullptr, UnderlyingV2);
Nuno Lopes598d1632017-08-08 21:25:26 +00001275 if (R != MustAlias) {
Chris Lattner7a5b56a2009-11-26 02:17:34 +00001276 // If V2 may alias GEP base pointer, conservatively returns MayAlias.
1277 // If V2 is known not to alias GEP base pointer, then the two values
Mehdi Amini1726fc62017-01-27 16:12:22 +00001278 // cannot alias per GEP semantics: "Any memory access must be done through
1279 // a pointer value associated with an address range of the memory access,
1280 // otherwise the behavior is undefined.".
Nuno Lopes598d1632017-08-08 21:25:26 +00001281 assert(R == NoAlias || R == MayAlias);
Chris Lattner7a5b56a2009-11-26 02:17:34 +00001282 return R;
Nuno Lopes598d1632017-08-08 21:25:26 +00001283 }
Chris Lattner6ea17f77f2003-12-11 22:44:13 +00001284
Arnold Schwaighofer1a444482014-03-26 21:30:19 +00001285 // If the max search depth is reached the result is undefined
1286 if (GEP1MaxLookupReached)
1287 return MayAlias;
Chris Lattner6ea17f77f2003-12-11 22:44:13 +00001288 }
Jakub Staszak07f383f2013-08-24 14:16:00 +00001289
Chris Lattner7a5b56a2009-11-26 02:17:34 +00001290 // In the two GEP Case, if there is no difference in the offsets of the
1291 // computed pointers, the resultant pointers are a must alias. This
Sanjay Patel9613b292016-01-17 23:13:48 +00001292 // happens when we have two lexically identical GEP's (for example).
Chris Lattnerd6a2a992003-02-26 19:41:54 +00001293 //
Chris Lattner7a5b56a2009-11-26 02:17:34 +00001294 // In the other case, if we have getelementptr <ptr>, 0, 0, 0, 0, ... and V2
1295 // must aliases the GEP, the end result is a must alias also.
Michael Kuperstein82069c42016-05-25 22:23:08 +00001296 if (GEP1BaseOffset == 0 && DecompGEP1.VarIndices.empty())
Evan Chengc1eed9d2009-10-14 06:41:49 +00001297 return MustAlias;
Evan Chengf1f3dd32009-10-13 18:42:04 +00001298
Eli Friedman3d1b3072011-09-08 02:23:31 +00001299 // If there is a constant difference between the pointers, but the difference
1300 // is less than the size of the associated memory object, then we know
1301 // that the objects are partially overlapping. If the difference is
1302 // greater, we know they do not overlap.
Michael Kuperstein82069c42016-05-25 22:23:08 +00001303 if (GEP1BaseOffset != 0 && DecompGEP1.VarIndices.empty()) {
Eli Friedman3d1b3072011-09-08 02:23:31 +00001304 if (GEP1BaseOffset >= 0) {
Nuno Lopes2ee4b302017-11-09 17:35:36 +00001305 if (V2Size != MemoryLocation::UnknownSize) {
Eli Friedman3d1b3072011-09-08 02:23:31 +00001306 if ((uint64_t)GEP1BaseOffset < V2Size)
1307 return PartialAlias;
1308 return NoAlias;
1309 }
1310 } else {
Arnold Schwaighofere3ac0992014-01-16 04:53:18 +00001311 // We have the situation where:
1312 // + +
1313 // | BaseOffset |
1314 // ---------------->|
1315 // |-->V1Size |-------> V2Size
1316 // GEP1 V2
1317 // We need to know that V2Size is not unknown, otherwise we might have
1318 // stripped a gep with negative index ('gep <ptr>, -1, ...).
Chandler Carruthecbd1682015-06-17 07:21:38 +00001319 if (V1Size != MemoryLocation::UnknownSize &&
1320 V2Size != MemoryLocation::UnknownSize) {
Eli Friedman3d1b3072011-09-08 02:23:31 +00001321 if (-(uint64_t)GEP1BaseOffset < V1Size)
1322 return PartialAlias;
1323 return NoAlias;
1324 }
1325 }
Dan Gohmanc4bf5ca2010-12-13 22:50:24 +00001326 }
1327
Michael Kuperstein82069c42016-05-25 22:23:08 +00001328 if (!DecompGEP1.VarIndices.empty()) {
Eli Friedmanb78ac542011-09-08 02:37:07 +00001329 uint64_t Modulo = 0;
Quentin Colombet5989bc62015-08-31 22:32:47 +00001330 bool AllPositive = true;
Michael Kuperstein82069c42016-05-25 22:23:08 +00001331 for (unsigned i = 0, e = DecompGEP1.VarIndices.size(); i != e; ++i) {
Quentin Colombet5989bc62015-08-31 22:32:47 +00001332
1333 // Try to distinguish something like &A[i][1] against &A[42][0].
1334 // Grab the least significant bit set in any of the scales. We
1335 // don't need std::abs here (even if the scale's negative) as we'll
1336 // be ^'ing Modulo with itself later.
Michael Kuperstein82069c42016-05-25 22:23:08 +00001337 Modulo |= (uint64_t)DecompGEP1.VarIndices[i].Scale;
Quentin Colombet5989bc62015-08-31 22:32:47 +00001338
1339 if (AllPositive) {
1340 // If the Value could change between cycles, then any reasoning about
1341 // the Value this cycle may not hold in the next cycle. We'll just
1342 // give up if we can't determine conditions that hold for every cycle:
Michael Kuperstein82069c42016-05-25 22:23:08 +00001343 const Value *V = DecompGEP1.VarIndices[i].V;
Quentin Colombet5989bc62015-08-31 22:32:47 +00001344
Craig Topper1a36b7d2017-05-15 06:39:41 +00001345 KnownBits Known = computeKnownBits(V, DL, 0, &AC, nullptr, DT);
1346 bool SignKnownZero = Known.isNonNegative();
1347 bool SignKnownOne = Known.isNegative();
Quentin Colombet5989bc62015-08-31 22:32:47 +00001348
1349 // Zero-extension widens the variable, and so forces the sign
1350 // bit to zero.
Michael Kuperstein82069c42016-05-25 22:23:08 +00001351 bool IsZExt = DecompGEP1.VarIndices[i].ZExtBits > 0 || isa<ZExtInst>(V);
Quentin Colombet5989bc62015-08-31 22:32:47 +00001352 SignKnownZero |= IsZExt;
1353 SignKnownOne &= !IsZExt;
1354
1355 // If the variable begins with a zero then we know it's
1356 // positive, regardless of whether the value is signed or
1357 // unsigned.
Michael Kuperstein82069c42016-05-25 22:23:08 +00001358 int64_t Scale = DecompGEP1.VarIndices[i].Scale;
Quentin Colombet5989bc62015-08-31 22:32:47 +00001359 AllPositive =
1360 (SignKnownZero && Scale >= 0) || (SignKnownOne && Scale < 0);
1361 }
1362 }
1363
Eli Friedmanb78ac542011-09-08 02:37:07 +00001364 Modulo = Modulo ^ (Modulo & (Modulo - 1));
Eli Friedman3d1b3072011-09-08 02:23:31 +00001365
Eli Friedmanb78ac542011-09-08 02:37:07 +00001366 // We can compute the difference between the two addresses
1367 // mod Modulo. Check whether that difference guarantees that the
1368 // two locations do not alias.
1369 uint64_t ModOffset = (uint64_t)GEP1BaseOffset & (Modulo - 1);
Chandler Carruthecbd1682015-06-17 07:21:38 +00001370 if (V1Size != MemoryLocation::UnknownSize &&
1371 V2Size != MemoryLocation::UnknownSize && ModOffset >= V2Size &&
1372 V1Size <= Modulo - ModOffset)
Eli Friedmanb78ac542011-09-08 02:37:07 +00001373 return NoAlias;
Quentin Colombet5989bc62015-08-31 22:32:47 +00001374
1375 // If we know all the variables are positive, then GEP1 >= GEP1BasePtr.
1376 // If GEP1BasePtr > V2 (GEP1BaseOffset > 0) then we know the pointers
1377 // don't alias if V2Size can fit in the gap between V2 and GEP1BasePtr.
1378 if (AllPositive && GEP1BaseOffset > 0 && V2Size <= (uint64_t)GEP1BaseOffset)
1379 return NoAlias;
1380
Michael Kuperstein82069c42016-05-25 22:23:08 +00001381 if (constantOffsetHeuristic(DecompGEP1.VarIndices, V1Size, V2Size,
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001382 GEP1BaseOffset, &AC, DT))
Quentin Colombet5989bc62015-08-31 22:32:47 +00001383 return NoAlias;
Eli Friedmanb78ac542011-09-08 02:37:07 +00001384 }
Eli Friedman3d1b3072011-09-08 02:23:31 +00001385
Dan Gohmanadf80ae2011-06-04 06:50:18 +00001386 // Statically, we can see that the base objects are the same, but the
1387 // pointers have dynamic offsets which we can't resolve. And none of our
1388 // little tricks above worked.
Michael Kruse47f85602017-06-21 18:25:37 +00001389 return MayAlias;
Evan Chengf1f3dd32009-10-13 18:42:04 +00001390}
1391
Chandler Carruthc3f49eb2015-06-22 02:16:51 +00001392static AliasResult MergeAliasResults(AliasResult A, AliasResult B) {
Dan Gohman4e7e7952011-06-03 20:17:36 +00001393 // If the results agree, take it.
1394 if (A == B)
1395 return A;
1396 // A mix of PartialAlias and MustAlias is PartialAlias.
Chandler Carruthc3f49eb2015-06-22 02:16:51 +00001397 if ((A == PartialAlias && B == MustAlias) ||
1398 (B == PartialAlias && A == MustAlias))
1399 return PartialAlias;
Dan Gohman4e7e7952011-06-03 20:17:36 +00001400 // Otherwise, we don't know anything.
Chandler Carruthc3f49eb2015-06-22 02:16:51 +00001401 return MayAlias;
Dan Gohman4e7e7952011-06-03 20:17:36 +00001402}
1403
Chandler Carruthc5d81122015-08-06 08:17:06 +00001404/// Provides a bunch of ad-hoc rules to disambiguate a Select instruction
1405/// against another.
Chandler Carruth7b560d42015-09-09 17:55:00 +00001406AliasResult BasicAAResult::aliasSelect(const SelectInst *SI, uint64_t SISize,
1407 const AAMDNodes &SIAAInfo,
1408 const Value *V2, uint64_t V2Size,
Ehsan Amiri17e17012016-08-12 16:05:03 +00001409 const AAMDNodes &V2AAInfo,
1410 const Value *UnderV2) {
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001411 // If the values are Selects with the same condition, we can do a more precise
1412 // check: just check for aliases between the values on corresponding arms.
1413 if (const SelectInst *SI2 = dyn_cast<SelectInst>(V2))
1414 if (SI->getCondition() == SI2->getCondition()) {
Chandler Carruth903c5f92015-08-06 07:57:58 +00001415 AliasResult Alias = aliasCheck(SI->getTrueValue(), SISize, SIAAInfo,
1416 SI2->getTrueValue(), V2Size, V2AAInfo);
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001417 if (Alias == MayAlias)
1418 return MayAlias;
1419 AliasResult ThisAlias =
Chandler Carruth903c5f92015-08-06 07:57:58 +00001420 aliasCheck(SI->getFalseValue(), SISize, SIAAInfo,
1421 SI2->getFalseValue(), V2Size, V2AAInfo);
Dan Gohman4e7e7952011-06-03 20:17:36 +00001422 return MergeAliasResults(ThisAlias, Alias);
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001423 }
1424
1425 // If both arms of the Select node NoAlias or MustAlias V2, then returns
1426 // NoAlias / MustAlias. Otherwise, returns MayAlias.
1427 AliasResult Alias =
Ehsan Amiri17e17012016-08-12 16:05:03 +00001428 aliasCheck(V2, V2Size, V2AAInfo, SI->getTrueValue(),
1429 SISize, SIAAInfo, UnderV2);
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001430 if (Alias == MayAlias)
1431 return MayAlias;
Dan Gohman7c34ece2010-06-28 21:16:52 +00001432
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001433 AliasResult ThisAlias =
Ehsan Amiri17e17012016-08-12 16:05:03 +00001434 aliasCheck(V2, V2Size, V2AAInfo, SI->getFalseValue(), SISize, SIAAInfo,
1435 UnderV2);
Dan Gohman4e7e7952011-06-03 20:17:36 +00001436 return MergeAliasResults(ThisAlias, Alias);
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001437}
1438
Chandler Carruthc5d81122015-08-06 08:17:06 +00001439/// Provide a bunch of ad-hoc rules to disambiguate a PHI instruction against
1440/// another.
Chandler Carruth7b560d42015-09-09 17:55:00 +00001441AliasResult BasicAAResult::aliasPHI(const PHINode *PN, uint64_t PNSize,
1442 const AAMDNodes &PNAAInfo, const Value *V2,
Ehsan Amiri17e17012016-08-12 16:05:03 +00001443 uint64_t V2Size, const AAMDNodes &V2AAInfo,
1444 const Value *UnderV2) {
Arnold Schwaighofer0d10a9d2014-01-02 03:31:36 +00001445 // Track phi nodes we have visited. We use this information when we determine
1446 // value equivalence.
1447 VisitedPhiBBs.insert(PN->getParent());
1448
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001449 // If the values are PHIs in the same block, we can do a more precise
1450 // as well as efficient check: just check for aliases between the values
1451 // on corresponding edges.
1452 if (const PHINode *PN2 = dyn_cast<PHINode>(V2))
1453 if (PN2->getParent() == PN->getParent()) {
Chandler Carruthac80dc72015-06-17 07:18:54 +00001454 LocPair Locs(MemoryLocation(PN, PNSize, PNAAInfo),
1455 MemoryLocation(V2, V2Size, V2AAInfo));
Arnold Schwaighofer8dc34cf2012-09-06 14:41:53 +00001456 if (PN > V2)
1457 std::swap(Locs.first, Locs.second);
Arnold Schwaighoferedd62b12012-12-10 23:02:41 +00001458 // Analyse the PHIs' inputs under the assumption that the PHIs are
1459 // NoAlias.
1460 // If the PHIs are May/MustAlias there must be (recursively) an input
1461 // operand from outside the PHIs' cycle that is MayAlias/MustAlias or
1462 // there must be an operation on the PHIs within the PHIs' value cycle
1463 // that causes a MayAlias.
1464 // Pretend the phis do not alias.
1465 AliasResult Alias = NoAlias;
1466 assert(AliasCache.count(Locs) &&
1467 "There must exist an entry for the phi node");
1468 AliasResult OrigAliasResult = AliasCache[Locs];
1469 AliasCache[Locs] = NoAlias;
Arnold Schwaighofer8dc34cf2012-09-06 14:41:53 +00001470
Hal Finkela6f86fc2012-11-17 02:33:15 +00001471 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001472 AliasResult ThisAlias =
Chandler Carruth903c5f92015-08-06 07:57:58 +00001473 aliasCheck(PN->getIncomingValue(i), PNSize, PNAAInfo,
1474 PN2->getIncomingValueForBlock(PN->getIncomingBlock(i)),
1475 V2Size, V2AAInfo);
Dan Gohman4e7e7952011-06-03 20:17:36 +00001476 Alias = MergeAliasResults(ThisAlias, Alias);
1477 if (Alias == MayAlias)
1478 break;
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001479 }
Arnold Schwaighofer8dc34cf2012-09-06 14:41:53 +00001480
1481 // Reset if speculation failed.
Arnold Schwaighoferedd62b12012-12-10 23:02:41 +00001482 if (Alias != NoAlias)
Arnold Schwaighofer8dc34cf2012-09-06 14:41:53 +00001483 AliasCache[Locs] = OrigAliasResult;
1484
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001485 return Alias;
1486 }
1487
Chandler Carruth903c5f92015-08-06 07:57:58 +00001488 SmallPtrSet<Value *, 4> UniqueSrc;
1489 SmallVector<Value *, 4> V1Srcs;
Tobias Edler von Kochd8ce16b2015-07-15 19:32:22 +00001490 bool isRecursive = false;
Pete Cooper833f34d2015-05-12 20:05:31 +00001491 for (Value *PV1 : PN->incoming_values()) {
Evan Chengc10e88d2009-10-13 22:02:20 +00001492 if (isa<PHINode>(PV1))
1493 // If any of the source itself is a PHI, return MayAlias conservatively
Evan Chengc1eed9d2009-10-14 06:41:49 +00001494 // to avoid compile time explosion. The worst possible case is if both
1495 // sides are PHI nodes. In which case, this is O(m x n) time where 'm'
1496 // and 'n' are the number of PHI sources.
Evan Chengc10e88d2009-10-13 22:02:20 +00001497 return MayAlias;
Tobias Edler von Kochd8ce16b2015-07-15 19:32:22 +00001498
1499 if (EnableRecPhiAnalysis)
1500 if (GEPOperator *PV1GEP = dyn_cast<GEPOperator>(PV1)) {
1501 // Check whether the incoming value is a GEP that advances the pointer
1502 // result of this PHI node (e.g. in a loop). If this is the case, we
1503 // would recurse and always get a MayAlias. Handle this case specially
1504 // below.
1505 if (PV1GEP->getPointerOperand() == PN && PV1GEP->getNumIndices() == 1 &&
1506 isa<ConstantInt>(PV1GEP->idx_begin())) {
1507 isRecursive = true;
1508 continue;
1509 }
1510 }
1511
David Blaikie70573dc2014-11-19 07:49:26 +00001512 if (UniqueSrc.insert(PV1).second)
Evan Chengc10e88d2009-10-13 22:02:20 +00001513 V1Srcs.push_back(PV1);
1514 }
1515
Tobias Edler von Kochd8ce16b2015-07-15 19:32:22 +00001516 // If this PHI node is recursive, set the size of the accessed memory to
1517 // unknown to represent all the possible values the GEP could advance the
1518 // pointer to.
1519 if (isRecursive)
1520 PNSize = MemoryLocation::UnknownSize;
1521
Chandler Carruth903c5f92015-08-06 07:57:58 +00001522 AliasResult Alias =
Ehsan Amiri17e17012016-08-12 16:05:03 +00001523 aliasCheck(V2, V2Size, V2AAInfo, V1Srcs[0],
1524 PNSize, PNAAInfo, UnderV2);
Tobias Edler von Kochd8ce16b2015-07-15 19:32:22 +00001525
Evan Chengf92f5552009-10-14 05:22:03 +00001526 // Early exit if the check of the first PHI source against V2 is MayAlias.
1527 // Other results are not possible.
1528 if (Alias == MayAlias)
1529 return MayAlias;
1530
Evan Chengc10e88d2009-10-13 22:02:20 +00001531 // If all sources of the PHI node NoAlias or MustAlias V2, then returns
1532 // NoAlias / MustAlias. Otherwise, returns MayAlias.
Evan Chengc10e88d2009-10-13 22:02:20 +00001533 for (unsigned i = 1, e = V1Srcs.size(); i != e; ++i) {
1534 Value *V = V1Srcs[i];
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001535
Chandler Carruth903c5f92015-08-06 07:57:58 +00001536 AliasResult ThisAlias =
Ehsan Amiri17e17012016-08-12 16:05:03 +00001537 aliasCheck(V2, V2Size, V2AAInfo, V, PNSize, PNAAInfo, UnderV2);
Dan Gohman4e7e7952011-06-03 20:17:36 +00001538 Alias = MergeAliasResults(ThisAlias, Alias);
1539 if (Alias == MayAlias)
1540 break;
Evan Chengc10e88d2009-10-13 22:02:20 +00001541 }
1542
1543 return Alias;
1544}
1545
David Majnemer0345b0f2015-11-17 08:15:08 +00001546/// Provides a bunch of ad-hoc rules to disambiguate in common cases, such as
Chandler Carruthc5d81122015-08-06 08:17:06 +00001547/// array references.
Chandler Carruth7b560d42015-09-09 17:55:00 +00001548AliasResult BasicAAResult::aliasCheck(const Value *V1, uint64_t V1Size,
1549 AAMDNodes V1AAInfo, const Value *V2,
Ehsan Amiri17e17012016-08-12 16:05:03 +00001550 uint64_t V2Size, AAMDNodes V2AAInfo,
1551 const Value *O1, const Value *O2) {
Dan Gohmancb45bd92010-04-08 18:11:50 +00001552 // If either of the memory references is empty, it doesn't matter what the
1553 // pointer values are.
1554 if (V1Size == 0 || V2Size == 0)
1555 return NoAlias;
1556
Evan Chengf1f3dd32009-10-13 18:42:04 +00001557 // Strip off any casts if they exist.
Piotr Padlewski610c9662017-04-24 19:37:17 +00001558 V1 = V1->stripPointerCastsAndBarriers();
1559 V2 = V2->stripPointerCastsAndBarriers();
Evan Chengf1f3dd32009-10-13 18:42:04 +00001560
Daniel Berlin3459d6e2015-05-05 18:10:49 +00001561 // If V1 or V2 is undef, the result is NoAlias because we can always pick a
1562 // value for undef that aliases nothing in the program.
1563 if (isa<UndefValue>(V1) || isa<UndefValue>(V2))
1564 return NoAlias;
1565
Evan Chengf1f3dd32009-10-13 18:42:04 +00001566 // Are we checking for alias of the same value?
Sanjay Patel9613b292016-01-17 23:13:48 +00001567 // Because we look 'through' phi nodes, we could look at "Value" pointers from
Arnold Schwaighofer833a82e2014-01-03 05:47:03 +00001568 // different iterations. We must therefore make sure that this is not the
1569 // case. The function isValueEqualInPotentialCycles ensures that this cannot
1570 // happen by looking at the visited phi nodes and making sure they cannot
1571 // reach the value.
1572 if (isValueEqualInPotentialCycles(V1, V2))
1573 return MustAlias;
Evan Chengf1f3dd32009-10-13 18:42:04 +00001574
Duncan Sands19d0b472010-02-16 11:11:14 +00001575 if (!V1->getType()->isPointerTy() || !V2->getType()->isPointerTy())
Chandler Carruth903c5f92015-08-06 07:57:58 +00001576 return NoAlias; // Scalars cannot alias each other
Evan Chengf1f3dd32009-10-13 18:42:04 +00001577
1578 // Figure out what objects these things are pointing to if we can.
Ehsan Amiri17e17012016-08-12 16:05:03 +00001579 if (O1 == nullptr)
1580 O1 = GetUnderlyingObject(V1, DL, MaxLookupSearchDepth);
1581
1582 if (O2 == nullptr)
1583 O2 = GetUnderlyingObject(V2, DL, MaxLookupSearchDepth);
Evan Chengf1f3dd32009-10-13 18:42:04 +00001584
Dan Gohmanccb45842009-11-09 19:29:11 +00001585 // Null values in the default address space don't point to any object, so they
1586 // don't alias any other pointer.
1587 if (const ConstantPointerNull *CPN = dyn_cast<ConstantPointerNull>(O1))
1588 if (CPN->getType()->getAddressSpace() == 0)
1589 return NoAlias;
1590 if (const ConstantPointerNull *CPN = dyn_cast<ConstantPointerNull>(O2))
1591 if (CPN->getType()->getAddressSpace() == 0)
1592 return NoAlias;
1593
Evan Chengf1f3dd32009-10-13 18:42:04 +00001594 if (O1 != O2) {
Sanjay Patel9613b292016-01-17 23:13:48 +00001595 // If V1/V2 point to two different objects, we know that we have no alias.
Dan Gohman00ef9322010-07-07 14:27:09 +00001596 if (isIdentifiedObject(O1) && isIdentifiedObject(O2))
Evan Chengf1f3dd32009-10-13 18:42:04 +00001597 return NoAlias;
Nick Lewyckyc53e2ec2009-11-14 06:15:14 +00001598
1599 // Constant pointers can't alias with non-const isIdentifiedObject objects.
Dan Gohman00ef9322010-07-07 14:27:09 +00001600 if ((isa<Constant>(O1) && isIdentifiedObject(O2) && !isa<Constant>(O2)) ||
1601 (isa<Constant>(O2) && isIdentifiedObject(O1) && !isa<Constant>(O1)))
Nick Lewyckyc53e2ec2009-11-14 06:15:14 +00001602 return NoAlias;
1603
Michael Kupersteinf3e663a2013-05-28 08:17:48 +00001604 // Function arguments can't alias with things that are known to be
1605 // unambigously identified at the function level.
1606 if ((isa<Argument>(O1) && isIdentifiedFunctionLocal(O2)) ||
1607 (isa<Argument>(O2) && isIdentifiedFunctionLocal(O1)))
Dan Gohman84f90a32010-07-01 20:08:40 +00001608 return NoAlias;
Evan Chengf1f3dd32009-10-13 18:42:04 +00001609
Dan Gohman5b0a8a82010-07-07 14:30:04 +00001610 // If one pointer is the result of a call/invoke or load and the other is a
1611 // non-escaping local object within the same function, then we know the
1612 // object couldn't escape to a point where the call could return it.
1613 //
1614 // Note that if the pointers are in different functions, there are a
1615 // variety of complications. A call with a nocapture argument may still
1616 // temporary store the nocapture argument's value in a temporary memory
1617 // location if that memory location doesn't escape. Or it may pass a
1618 // nocapture value to other functions as long as they don't capture it.
1619 if (isEscapeSource(O1) && isNonEscapingLocalObject(O2))
1620 return NoAlias;
1621 if (isEscapeSource(O2) && isNonEscapingLocalObject(O1))
1622 return NoAlias;
1623 }
1624
Evan Chengf1f3dd32009-10-13 18:42:04 +00001625 // If the size of one access is larger than the entire object on the other
1626 // side, then we know such behavior is undefined and can assume no alias.
Chandler Carruth7b560d42015-09-09 17:55:00 +00001627 if ((V1Size != MemoryLocation::UnknownSize &&
1628 isObjectSmallerThan(O2, V1Size, DL, TLI)) ||
1629 (V2Size != MemoryLocation::UnknownSize &&
1630 isObjectSmallerThan(O1, V2Size, DL, TLI)))
1631 return NoAlias;
Jakub Staszak07f383f2013-08-24 14:16:00 +00001632
Dan Gohmanfb02cec2011-06-04 00:31:50 +00001633 // Check the cache before climbing up use-def chains. This also terminates
1634 // otherwise infinitely recursive queries.
Chandler Carruthac80dc72015-06-17 07:18:54 +00001635 LocPair Locs(MemoryLocation(V1, V1Size, V1AAInfo),
1636 MemoryLocation(V2, V2Size, V2AAInfo));
Dan Gohmanfb02cec2011-06-04 00:31:50 +00001637 if (V1 > V2)
1638 std::swap(Locs.first, Locs.second);
1639 std::pair<AliasCacheTy::iterator, bool> Pair =
Chandler Carruth903c5f92015-08-06 07:57:58 +00001640 AliasCache.insert(std::make_pair(Locs, MayAlias));
Dan Gohmanfb02cec2011-06-04 00:31:50 +00001641 if (!Pair.second)
1642 return Pair.first->second;
1643
Chris Lattner89288992009-11-26 02:13:03 +00001644 // FIXME: This isn't aggressively handling alias(GEP, PHI) for example: if the
1645 // GEP can't simplify, we don't even look at the PHI cases.
Chris Lattnerb2647b92009-10-17 23:48:54 +00001646 if (!isa<GEPOperator>(V1) && isa<GEPOperator>(V2)) {
Chris Lattnerd6a2a992003-02-26 19:41:54 +00001647 std::swap(V1, V2);
1648 std::swap(V1Size, V2Size);
Chris Lattner5341c962009-11-26 02:14:59 +00001649 std::swap(O1, O2);
Hal Finkelcc39b672014-07-24 12:16:19 +00001650 std::swap(V1AAInfo, V2AAInfo);
Chris Lattnerd6a2a992003-02-26 19:41:54 +00001651 }
Dan Gohman02538ac2010-10-18 18:04:47 +00001652 if (const GEPOperator *GV1 = dyn_cast<GEPOperator>(V1)) {
Chandler Carruth903c5f92015-08-06 07:57:58 +00001653 AliasResult Result =
1654 aliasGEP(GV1, V1Size, V1AAInfo, V2, V2Size, V2AAInfo, O1, O2);
1655 if (Result != MayAlias)
1656 return AliasCache[Locs] = Result;
Dan Gohman02538ac2010-10-18 18:04:47 +00001657 }
Evan Chengc10e88d2009-10-13 22:02:20 +00001658
1659 if (isa<PHINode>(V2) && !isa<PHINode>(V1)) {
1660 std::swap(V1, V2);
Ehsan Amiri17e17012016-08-12 16:05:03 +00001661 std::swap(O1, O2);
Evan Chengc10e88d2009-10-13 22:02:20 +00001662 std::swap(V1Size, V2Size);
Hal Finkelcc39b672014-07-24 12:16:19 +00001663 std::swap(V1AAInfo, V2AAInfo);
Evan Chengc10e88d2009-10-13 22:02:20 +00001664 }
Dan Gohman02538ac2010-10-18 18:04:47 +00001665 if (const PHINode *PN = dyn_cast<PHINode>(V1)) {
Ehsan Amiri17e17012016-08-12 16:05:03 +00001666 AliasResult Result = aliasPHI(PN, V1Size, V1AAInfo,
1667 V2, V2Size, V2AAInfo, O2);
Chandler Carruth903c5f92015-08-06 07:57:58 +00001668 if (Result != MayAlias)
1669 return AliasCache[Locs] = Result;
Dan Gohman02538ac2010-10-18 18:04:47 +00001670 }
Misha Brukman01808ca2005-04-21 21:13:18 +00001671
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001672 if (isa<SelectInst>(V2) && !isa<SelectInst>(V1)) {
1673 std::swap(V1, V2);
Ehsan Amiri17e17012016-08-12 16:05:03 +00001674 std::swap(O1, O2);
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001675 std::swap(V1Size, V2Size);
Hal Finkelcc39b672014-07-24 12:16:19 +00001676 std::swap(V1AAInfo, V2AAInfo);
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001677 }
Dan Gohman02538ac2010-10-18 18:04:47 +00001678 if (const SelectInst *S1 = dyn_cast<SelectInst>(V1)) {
Chandler Carruth903c5f92015-08-06 07:57:58 +00001679 AliasResult Result =
Ehsan Amiri17e17012016-08-12 16:05:03 +00001680 aliasSelect(S1, V1Size, V1AAInfo, V2, V2Size, V2AAInfo, O2);
Chandler Carruth903c5f92015-08-06 07:57:58 +00001681 if (Result != MayAlias)
1682 return AliasCache[Locs] = Result;
Dan Gohman02538ac2010-10-18 18:04:47 +00001683 }
Dan Gohman3b7ba5f2009-10-26 21:55:43 +00001684
Dan Gohman44da55b2011-01-18 21:16:06 +00001685 // If both pointers are pointing into the same object and one of them
Sanjay Patel9613b292016-01-17 23:13:48 +00001686 // accesses the entire object, then the accesses must overlap in some way.
Chandler Carruth7b560d42015-09-09 17:55:00 +00001687 if (O1 == O2)
Nuno Lopes17921d92017-11-08 10:59:00 +00001688 if (V1Size != MemoryLocation::UnknownSize &&
1689 V2Size != MemoryLocation::UnknownSize &&
1690 (isObjectSize(O1, V1Size, DL, TLI) ||
Chandler Carruth7b560d42015-09-09 17:55:00 +00001691 isObjectSize(O2, V2Size, DL, TLI)))
Dan Gohmanfb02cec2011-06-04 00:31:50 +00001692 return AliasCache[Locs] = PartialAlias;
Dan Gohman44da55b2011-01-18 21:16:06 +00001693
Chandler Carruth7b560d42015-09-09 17:55:00 +00001694 // Recurse back into the best AA results we have, potentially with refined
1695 // memory locations. We have already ensured that BasicAA has a MayAlias
1696 // cache result for these, so any recursion back into BasicAA won't loop.
1697 AliasResult Result = getBestAAResults().alias(Locs.first, Locs.second);
Dan Gohmanfb02cec2011-06-04 00:31:50 +00001698 return AliasCache[Locs] = Result;
Chris Lattnerd6a2a992003-02-26 19:41:54 +00001699}
Arnold Schwaighofer0d10a9d2014-01-02 03:31:36 +00001700
Chandler Carruthc5d81122015-08-06 08:17:06 +00001701/// Check whether two Values can be considered equivalent.
1702///
1703/// In addition to pointer equivalence of \p V1 and \p V2 this checks whether
1704/// they can not be part of a cycle in the value graph by looking at all
1705/// visited phi nodes an making sure that the phis cannot reach the value. We
1706/// have to do this because we are looking through phi nodes (That is we say
1707/// noalias(V, phi(VA, VB)) if noalias(V, VA) and noalias(V, VB).
Chandler Carruth7b560d42015-09-09 17:55:00 +00001708bool BasicAAResult::isValueEqualInPotentialCycles(const Value *V,
1709 const Value *V2) {
Arnold Schwaighofer0d10a9d2014-01-02 03:31:36 +00001710 if (V != V2)
1711 return false;
1712
1713 const Instruction *Inst = dyn_cast<Instruction>(V);
1714 if (!Inst)
1715 return true;
1716
Daniel Berlin9e77de22015-03-20 18:05:49 +00001717 if (VisitedPhiBBs.empty())
1718 return true;
1719
Arnold Schwaighofer833a82e2014-01-03 05:47:03 +00001720 if (VisitedPhiBBs.size() > MaxNumPhiBBsValueReachabilityCheck)
1721 return false;
1722
Arnold Schwaighofer833a82e2014-01-03 05:47:03 +00001723 // Make sure that the visited phis cannot reach the Value. This ensures that
1724 // the Values cannot come from different iterations of a potential cycle the
1725 // phi nodes could be involved in.
Craig Topper46276792014-08-24 23:23:06 +00001726 for (auto *P : VisitedPhiBBs)
Duncan P. N. Exon Smith5a82c912015-10-10 00:53:03 +00001727 if (isPotentiallyReachable(&P->front(), Inst, DT, LI))
Arnold Schwaighofer0d10a9d2014-01-02 03:31:36 +00001728 return false;
1729
Arnold Schwaighofer833a82e2014-01-03 05:47:03 +00001730 return true;
Arnold Schwaighofer0d10a9d2014-01-02 03:31:36 +00001731}
1732
Chandler Carruthc5d81122015-08-06 08:17:06 +00001733/// Computes the symbolic difference between two de-composed GEPs.
1734///
1735/// Dest and Src are the variable indices from two decomposed GetElementPtr
1736/// instructions GEP1 and GEP2 which have common base pointers.
Chandler Carruth7b560d42015-09-09 17:55:00 +00001737void BasicAAResult::GetIndexDifference(
Arnold Schwaighofer0d10a9d2014-01-02 03:31:36 +00001738 SmallVectorImpl<VariableGEPIndex> &Dest,
1739 const SmallVectorImpl<VariableGEPIndex> &Src) {
1740 if (Src.empty())
1741 return;
1742
1743 for (unsigned i = 0, e = Src.size(); i != e; ++i) {
1744 const Value *V = Src[i].V;
Quentin Colombet5989bc62015-08-31 22:32:47 +00001745 unsigned ZExtBits = Src[i].ZExtBits, SExtBits = Src[i].SExtBits;
Arnold Schwaighofer0d10a9d2014-01-02 03:31:36 +00001746 int64_t Scale = Src[i].Scale;
1747
1748 // Find V in Dest. This is N^2, but pointer indices almost never have more
1749 // than a few variable indexes.
1750 for (unsigned j = 0, e = Dest.size(); j != e; ++j) {
Arnold Schwaighofer833a82e2014-01-03 05:47:03 +00001751 if (!isValueEqualInPotentialCycles(Dest[j].V, V) ||
Quentin Colombet5989bc62015-08-31 22:32:47 +00001752 Dest[j].ZExtBits != ZExtBits || Dest[j].SExtBits != SExtBits)
Arnold Schwaighofer0d10a9d2014-01-02 03:31:36 +00001753 continue;
1754
1755 // If we found it, subtract off Scale V's from the entry in Dest. If it
1756 // goes to zero, remove the entry.
1757 if (Dest[j].Scale != Scale)
1758 Dest[j].Scale -= Scale;
1759 else
1760 Dest.erase(Dest.begin() + j);
1761 Scale = 0;
1762 break;
1763 }
1764
1765 // If we didn't consume this entry, add it to the end of the Dest list.
1766 if (Scale) {
Quentin Colombet5989bc62015-08-31 22:32:47 +00001767 VariableGEPIndex Entry = {V, ZExtBits, SExtBits, -Scale};
Arnold Schwaighofer0d10a9d2014-01-02 03:31:36 +00001768 Dest.push_back(Entry);
1769 }
1770 }
1771}
Quentin Colombet5989bc62015-08-31 22:32:47 +00001772
Chandler Carruth7b560d42015-09-09 17:55:00 +00001773bool BasicAAResult::constantOffsetHeuristic(
Quentin Colombet5989bc62015-08-31 22:32:47 +00001774 const SmallVectorImpl<VariableGEPIndex> &VarIndices, uint64_t V1Size,
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001775 uint64_t V2Size, int64_t BaseOffset, AssumptionCache *AC,
Chandler Carruth7b560d42015-09-09 17:55:00 +00001776 DominatorTree *DT) {
Quentin Colombet5989bc62015-08-31 22:32:47 +00001777 if (VarIndices.size() != 2 || V1Size == MemoryLocation::UnknownSize ||
Chandler Carruth7b560d42015-09-09 17:55:00 +00001778 V2Size == MemoryLocation::UnknownSize)
Quentin Colombet5989bc62015-08-31 22:32:47 +00001779 return false;
1780
1781 const VariableGEPIndex &Var0 = VarIndices[0], &Var1 = VarIndices[1];
1782
1783 if (Var0.ZExtBits != Var1.ZExtBits || Var0.SExtBits != Var1.SExtBits ||
1784 Var0.Scale != -Var1.Scale)
1785 return false;
1786
1787 unsigned Width = Var1.V->getType()->getIntegerBitWidth();
1788
1789 // We'll strip off the Extensions of Var0 and Var1 and do another round
1790 // of GetLinearExpression decomposition. In the example above, if Var0
1791 // is zext(%x + 1) we should get V1 == %x and V1Offset == 1.
1792
1793 APInt V0Scale(Width, 0), V0Offset(Width, 0), V1Scale(Width, 0),
1794 V1Offset(Width, 0);
1795 bool NSW = true, NUW = true;
1796 unsigned V0ZExtBits = 0, V0SExtBits = 0, V1ZExtBits = 0, V1SExtBits = 0;
1797 const Value *V0 = GetLinearExpression(Var0.V, V0Scale, V0Offset, V0ZExtBits,
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001798 V0SExtBits, DL, 0, AC, DT, NSW, NUW);
Richard Trieu7a083812016-02-18 22:09:30 +00001799 NSW = true;
1800 NUW = true;
Quentin Colombet5989bc62015-08-31 22:32:47 +00001801 const Value *V1 = GetLinearExpression(Var1.V, V1Scale, V1Offset, V1ZExtBits,
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001802 V1SExtBits, DL, 0, AC, DT, NSW, NUW);
Quentin Colombet5989bc62015-08-31 22:32:47 +00001803
1804 if (V0Scale != V1Scale || V0ZExtBits != V1ZExtBits ||
1805 V0SExtBits != V1SExtBits || !isValueEqualInPotentialCycles(V0, V1))
1806 return false;
1807
1808 // We have a hit - Var0 and Var1 only differ by a constant offset!
1809
1810 // If we've been sext'ed then zext'd the maximum difference between Var0 and
1811 // Var1 is possible to calculate, but we're just interested in the absolute
Benjamin Kramer557b6012015-10-24 11:38:01 +00001812 // minimum difference between the two. The minimum distance may occur due to
Quentin Colombet5989bc62015-08-31 22:32:47 +00001813 // wrapping; consider "add i3 %i, 5": if %i == 7 then 7 + 5 mod 8 == 4, and so
1814 // the minimum distance between %i and %i + 5 is 3.
Benjamin Kramer557b6012015-10-24 11:38:01 +00001815 APInt MinDiff = V0Offset - V1Offset, Wrapped = -MinDiff;
Quentin Colombet5989bc62015-08-31 22:32:47 +00001816 MinDiff = APIntOps::umin(MinDiff, Wrapped);
1817 uint64_t MinDiffBytes = MinDiff.getZExtValue() * std::abs(Var0.Scale);
1818
1819 // We can't definitely say whether GEP1 is before or after V2 due to wrapping
1820 // arithmetic (i.e. for some values of GEP1 and V2 GEP1 < V2, and for other
1821 // values GEP1 > V2). We'll therefore only declare NoAlias if both V1Size and
1822 // V2Size can fit in the MinDiffBytes gap.
1823 return V1Size + std::abs(BaseOffset) <= MinDiffBytes &&
1824 V2Size + std::abs(BaseOffset) <= MinDiffBytes;
1825}
Chandler Carruth7b560d42015-09-09 17:55:00 +00001826
1827//===----------------------------------------------------------------------===//
1828// BasicAliasAnalysis Pass
1829//===----------------------------------------------------------------------===//
1830
Chandler Carruthdab4eae2016-11-23 17:53:26 +00001831AnalysisKey BasicAA::Key;
Chandler Carruthb4faf132016-03-11 10:22:49 +00001832
Sean Silva36e0d012016-08-09 00:28:15 +00001833BasicAAResult BasicAA::run(Function &F, FunctionAnalysisManager &AM) {
Chandler Carruth7b560d42015-09-09 17:55:00 +00001834 return BasicAAResult(F.getParent()->getDataLayout(),
Chandler Carruthb47f8012016-03-11 11:05:24 +00001835 AM.getResult<TargetLibraryAnalysis>(F),
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001836 AM.getResult<AssumptionAnalysis>(F),
Chandler Carruth5bfbc3f2016-03-11 13:53:18 +00001837 &AM.getResult<DominatorTreeAnalysis>(F),
Chandler Carruthb47f8012016-03-11 11:05:24 +00001838 AM.getCachedResult<LoopAnalysis>(F));
Chandler Carruth7b560d42015-09-09 17:55:00 +00001839}
1840
Keno Fischer277bfae2015-10-26 21:22:58 +00001841BasicAAWrapperPass::BasicAAWrapperPass() : FunctionPass(ID) {
1842 initializeBasicAAWrapperPassPass(*PassRegistry::getPassRegistry());
1843}
1844
Chandler Carruth7b560d42015-09-09 17:55:00 +00001845char BasicAAWrapperPass::ID = 0;
Eugene Zelenko530851c2017-08-11 21:30:02 +00001846
Chandler Carruth7b560d42015-09-09 17:55:00 +00001847void BasicAAWrapperPass::anchor() {}
1848
1849INITIALIZE_PASS_BEGIN(BasicAAWrapperPass, "basicaa",
1850 "Basic Alias Analysis (stateless AA impl)", true, true)
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001851INITIALIZE_PASS_DEPENDENCY(AssumptionCacheTracker)
Chandler Carruth5bfbc3f2016-03-11 13:53:18 +00001852INITIALIZE_PASS_DEPENDENCY(DominatorTreeWrapperPass)
Chandler Carruth7b560d42015-09-09 17:55:00 +00001853INITIALIZE_PASS_DEPENDENCY(TargetLibraryInfoWrapperPass)
1854INITIALIZE_PASS_END(BasicAAWrapperPass, "basicaa",
1855 "Basic Alias Analysis (stateless AA impl)", true, true)
1856
1857FunctionPass *llvm::createBasicAAWrapperPass() {
1858 return new BasicAAWrapperPass();
1859}
1860
1861bool BasicAAWrapperPass::runOnFunction(Function &F) {
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001862 auto &ACT = getAnalysis<AssumptionCacheTracker>();
Chandler Carruth7b560d42015-09-09 17:55:00 +00001863 auto &TLIWP = getAnalysis<TargetLibraryInfoWrapperPass>();
Chandler Carruth5bfbc3f2016-03-11 13:53:18 +00001864 auto &DTWP = getAnalysis<DominatorTreeWrapperPass>();
Chandler Carruth7b560d42015-09-09 17:55:00 +00001865 auto *LIWP = getAnalysisIfAvailable<LoopInfoWrapperPass>();
1866
1867 Result.reset(new BasicAAResult(F.getParent()->getDataLayout(), TLIWP.getTLI(),
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001868 ACT.getAssumptionCache(F), &DTWP.getDomTree(),
Chandler Carruth7b560d42015-09-09 17:55:00 +00001869 LIWP ? &LIWP->getLoopInfo() : nullptr));
1870
1871 return false;
1872}
1873
1874void BasicAAWrapperPass::getAnalysisUsage(AnalysisUsage &AU) const {
1875 AU.setPreservesAll();
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001876 AU.addRequired<AssumptionCacheTracker>();
Chandler Carruth5bfbc3f2016-03-11 13:53:18 +00001877 AU.addRequired<DominatorTreeWrapperPass>();
Chandler Carruth7b560d42015-09-09 17:55:00 +00001878 AU.addRequired<TargetLibraryInfoWrapperPass>();
1879}
1880
1881BasicAAResult llvm::createLegacyPMBasicAAResult(Pass &P, Function &F) {
1882 return BasicAAResult(
1883 F.getParent()->getDataLayout(),
Daniel Jasperaec2fa32016-12-19 08:22:17 +00001884 P.getAnalysis<TargetLibraryInfoWrapperPass>().getTLI(),
1885 P.getAnalysis<AssumptionCacheTracker>().getAssumptionCache(F));
Chandler Carruth7b560d42015-09-09 17:55:00 +00001886}